Parametric Study of NOx Reduction by Reburning in a Carbon Monoxide Boiler

Size: px
Start display at page:

Download "Parametric Study of NOx Reduction by Reburning in a Carbon Monoxide Boiler"

Transcription

1 4th International Conference on Mechanical, Automotive and Materials Engineering (ICMAME'214) Jan , 214 Bangkok (Thailand) Parametric Study of NOx Reduction by Reburning in a Carbon Monoxide Boiler Chun-Lang Yeh Abstract In this study, NOx reduction by reburning in a carbon monoxide (CO) boiler is investigated. This study adopts a CO boiler from the Formosa Petrochemical Corporation (FPC) in Taiwan as the model for numerical investigation. The combustion and fluid flow in the FPC CO boiler is examined with emphasis on the effect of reburning upon NOx reduction. The influences of some relevant parameters to reburning are inspected, including the size, position and number of reburn fuel or air holes, the primary/reburn fuel ratio, as well as the inlet/reburn air ratio. It is found that NOx reduction occurs mainly behind the DeNOx section where recirculation is prominent. For a smaller reburn hole, the injection velocity and the penetration depth are larger and this yields a better NOx reduction. On the other hand, the injection velocity and the penetration depth are smaller for a larger reburn hole and this leads to a local high temperature region near the reburn hole and a worse NOx reduction. NOx reduction is better for a lower primary/reburn fuel ratio and a higher inlet/reburn air ratio. In addition, NOx reduction is better when the reburn air hole is closer to the reburn fuel hole and when the reburn fuel is injected from where recirculation is prominent. The cross-sectional average temperature arises near the reburn fuel hole and the temperature rise is higher when the reburn fuel is injected more upstream where recirculation is stronger. In addition, the cross-sectional average temperature decreases first and arises then near the reburn air hole. Finally, based on a specified reburn fuel and air flow rates, a single-reburn-hole arrangement yields lower NOx concentration and temperature than a three-reburn-holes arrangement does. Keywords CO boiler, reburning, NOx reduction. I. INTRODUCTION EBURNIBG technology is one of the most promising and Rcost-effective NOx reduction strategies for combustion systems. Wang et al. [1] carried out the reburning experiments with six kinds of biomass and one biochar in an entrained flow reactor. Their results indicated that NO reduction efficiency behaves a trend of first increase and then decrease with decreasing of stoichiometric ratio in the reburn-zone or increasing of reburn fuel fraction. Kim et al. [2] carried out experimental and numerical studies to investigate the effect of the fuel lean reburning process on the NOx reduction and CO emission. The detailed numerical results showed that the recirculation flow developed inside the boiler was found to play an important role in improving the effectiveness of fuel lean reburning process. Giménez-López et al. [3] performed an experimental parametric study on the NO reduction efficiency by reburning in the 8 to 18 K temperature range. A Chun-Lang Yeh, Professor Department of Aeronautical Engineering, National Formosa University, Huwei, Yunlin 632, Taiwan, R.O.C. Phone: ; fax: ; clyeh@nfu.edu.tw significant NO reduction can be obtained at moderately high temperatures, fuel-rich conditions, high values of the reburn fuel/no ratio, sufficiently high residence times and low water vapor contents. Oh et al. [4] investigated reburning of cattle manure-based biomass (CB) with coals to develop environmentally friendly thermochemical energy conversion technologies for NOx reductions and Hg captures and removals from existing pulverized coalfired power plants. Their results indicated that the CB can serve as a very effective fuel supplementing coals on NOx reductions and Hg captures and removals in pulverized coal-fired boilers. Kim and Baek [] presented an experimental study focused on a fuel-lean reburn system to control NOx emission from combustion process. The fuel-lean reburn system, even with only an amount of reburn fuel of 13% of total heat input, was observed to achieve a maximum of 48% in NOx reduction. Nguyen et al. [6] evaluated the technical and economical feasibility of utilizing a low-calorific fuel gas as a reburn fuel. Their study indicated that the proposed reburn fuel and OFA injection systems will provide adequate mixing and reasonable residence time for the reburn application. Dimitriou et al. [7] presented a reburn chemistry modelling method for predicting the reduction of NOx emissions in coal combustors. The model is applied to predict NOx reductions in a large-scale laboratory pulverised fuel combustor with gas as well as coal reburn strategies. Ahn et al. [8] performed an experimental study on the combustion characteristics of a low NOx burner using reburning technology. When the amount of reburn fuel reaches to 2-3% of the total fuel used, the overall NO reduction of % is achieved. Carbon Monoxide (CO) boiler plays an important role in the petroleum-refining process. It can retrieve the thermal energy of CO from the regenerator. CO boiler utilizes the burning gas (CO) from the regenerator as fuel. Then CO reacts to form CO 2 and release large amount of heat. The high-temperature flue gas then flows through the superheating section and exchanges heat with the water in the pipelines to produce superheated steam which can be used by other equipment. A CO boiler is composed of an oxidizer section, a DeNOx section, a flue gas cooler section, a DeSOx section, and a stack. The operating temperatures in oxidizer and DeNOx sections can be as high as 12 o C. This can result in interior or exterior problems of a CO boiler. The loss caused by shutdown/inspection/maintenance of a CO boiler can be ten million $NT per day. Consequently, performance of a CO boiler has a detrimental influence on the operation and production of petrochemical industry, steel & iron industry, and relevant industries. Configuration of a CO boiler for a typical petroleum refinery is shown in Fig.1. 6

2 4th International Conference on Mechanical, Automotive and Materials Engineering (ICMAME'214) Jan , 214 Bangkok (Thailand) Fig. 1 Configuration of a CO boiler in a typical petroleum refinery This study adopts a CO boiler from the Formosa Petrochemical Corporation (FPC) in Taiwan as the model for numerical investigation. Configuration and dimensions of the CO boiler investigated are shown in Fig.2. The combustion and fluid flow in the FPC CO boiler is examined with emphasis on the effect of reburning upon NOx reduction. The influences of some relevant parameters to reburning are inspected, including the size, position and number of reburn fuel or air holes, the primary/reburn fuel ratio, as well as the inlet/reburn air ratio. (a) dimensions of the CO boiler investigated (b) numerical model of the CO boiler investigated (c) enlarged view of the CO boiler inlet (d) dimensions of the CO boiler inlet Fig. 2 Configuration and dimension of the CO boiler investigated II. NUMERICAL METHODS AND PHYSICAL MODELS In this study, the FLUENT commercial code is employed to simulate the reacting and fluid flow in the FPC CO boiler. The SIMPLE algorithm by Patankar is used to solve the governing equations. The discretizations of convection terms and diffusion terms are carried out by the power-law scheme and the central difference scheme, respectively. In respect of physical models, by considering the accuracy and stability of the models and by referring to the evaluation of other researchers, the standard k-ε Model, P-1 radiation model and non-premixed combustion model with β type probability density function, and partial equilibrium model [9] are adopted for turbulence, radiation, combustion and reburning simulations, respectively. The standard wall functions are used to resolve the flow quantities ( velocity, temperature, and turbulence quantities ) at the near-wall regions. III. RESULTS AND DISCUSSION In this study, the numerical model of the CO boiler is constructed by unstructured grid. In the author s previous study [], five cell densities for the CO boiler (i.e. without reburn holes) were tested to ensure a grid independence solution. They include 49,68 cells, 73,87 cells, 198,46 cells, 349,411 cells, and,73 cells. Computational results showed that the recirculation zone sizes of the DeNOx section and the cross-sectional average temperature profiles obtained by the last two meshes nearly coincide with deviation within.%. Therefore, the mesh of 349,411 cells is adopted for the CO boiler in subsequent discussion. For the CO boiler with reburn holes, the numerical model is constructed by adding reburn holes to the above CO boiler. In this study, we examined four reburn hole diameters,.1m,.2m,.3m and.4m. We tested three mesh sizes,.1m,.m and.m, in constructing reburn holes. It is found that the above three mesh sizes have minor influences on the computational results for the CO boilers with reburn hole sizes of.2m,.3m and.4m. The recirculation zone sizes of the DeNOx section and the cross-sectional average temperature profiles obtained by the three mesh sizes nearly coincide with deviation within.%. However, for the CO boiler with reburn hole sizes of.1m, the computational results with mesh size of.m is a little 7

3 4th International Conference on Mechanical, Automotive and Materials Engineering (ICMAME'214) Jan , 214 Bangkok (Thailand) different from the results with mesh sizes of.m or.1m, especially, in the neighborhood of reburn holes. This may be due to the insufficient mesh density near the reburn holes with mesh size of.m. Therefore, the reburn hole with mesh size of.m is adopted in subsequent discussion. The total number of meshes is around 4, and may differ with the reburn hole sizes and positions. In this study, we examined four reburn fuel injection positions, as shown in Fig.2(a), and three reburn/total fuel mass fractions (7%, 8% and 9%), as well as three reburn/total air mass fractions (7%, 8% and 9%). Species compositions at the flue gas inlet and the fuel inlet (including primary and reburn fuels ) are listed in Tables 1 and 2, respectively. Inlet pressure is 1 atm. The primary air inlets are facilitated by swirlers at a 6 o swirl angle. Axial and tangential velocity components are 6.31 and.93 m/sec, respectively, for the boiler (i.e. without reburning). Temperature is 3K. Turbulence kinetic energy is % of the inlet mean flow kinetic energy and turbulence dissipation rate is computed from Eq.(1) with hydraulic diameter L=.944m. 3/ 2 4 k ε = C 3/ (1) µ l where l=.7l and L is the hydraulic diameter. At the secondary air inlet, velocity is 4.4m/sec for the boiler, temperature is 3K, turbulence kinetic energy is % of the inlet mean flow kinetic energy, and the turbulence dissipation rate is computed from Eq.(1) with hydraulic diameter L of either.2m or.m (Fig.2(d)). At the fuel inlet, velocity is.33m/sec for the boiler, temperature is 323K, turbulence kinetic energy is % of the inlet mean flow kinetic energy, and the turbulence dissipation rate is computed from Eq.(1) with a hydraulic diameter L=.1m. At the flue gas inlet, velocity is 13.m/sec, temperature is 877K, turbulence kinetic energy is % of the inlet mean flow kinetic energy, and the turbulence dissipation rate is computed from Eq.(1) with a hydraulic diameter L=.912m. The heat absorption rate of the flue gas cooling tubes is 26,72 w/m 2 and the other walls are adiabatic. No slip condition is applied on any of the solid walls. The atmosphere at the exit is taken as a cube with a side length of twenty times the exit diameter of the DeSOx section. The atmosphere is at 3K and 1 atm. TABLE I SPECIES COMPOSITION AT THE FLUE GAS INLET HOLES (MOLE FRACTION) Carbon dioxide(co 2) 13.1% Carbon monoxide(co) 2.71% Nitrogen(N 2) 7.92% Water(H 2O) 13.27% TABLE II Species Composition At The Fuel Inlet Holes (Mole Fraction) Methane(CH 4).482 Ethane(C 2H 6) Propane(C 3H 8) Propylene(C 3H 6) Carbon monoxide(co) Oxygen(O 2) Nitrogen(N 2) Hydrogen(H 2).292 Sulphur(S) A. Effect of Reburn Hole Size Fig.3 shows the comparison of cross-sectional average NO concentration for different size of reburn hole. The reburn fuel is injected from the first reburn hole and the reburn/total fuel mass fraction is 3%. The reburn air is injected from the second reburn hole and the reburn/total air mass fraction is %. We adopt these mass fractions for discussing the effect of reburn hole size because, in next section, we will demonstrate that these mass fractions is a better operation condition for NOx reduction by reburn. The result shows that NOx reduction occurs mainly behind the DeNOx section (x 11m) where recirculation is prominent. The recirculation flow is conducive to the NOx reduction reaction by reburn. It is also observed that NOx reduction is better for a smaller reburn hole because the injection velocity and penetration depth of the reburn fuel and air are larger for a smaller reburn hole and this is conducive to the NOx reduction reaction of the reburn fuel and air. This can also be seen from Fig.4 which shows the temperature profiles at the symmetric plane (z=) for different reburn hole sizes. On the contrary, NOx reduction is worse for a larger reburn hole because the injection velocity and penetration depth of the reburn fuel and air are smaller and this results in a local high temperature region near the reburn fuel hole as shown in Fig.4(b). D=.1m D=.2m D=.3m D=.4m Fig. 3 Comparison of cross-sectional average NO concentration for different size of reburn hole 8

4 4th International Conference on Mechanical, Automotive and Materials Engineering (ICMAME'214) Jan , 214 Bangkok (Thailand) (a) D=.1m B. Effect Of Reburn Fuel Fraction And Reburn Air Fraction Fig.6 shows the comparison of cross-sectional average NO concentration for different reburn/total fuel mass fractions. The reburn fuel is injected from the first reburn hole and three reburn/total fuel mass fractions, %, 2 and 3%, are examined. The reburn air is injected from the second reburn hole and the reburn/total air mass fraction is kept at %. From Fig.6(a), it is seen that, for reburn hole size of.4m, NOx reduction is best for reburn/total fuel mass fraction of 3%. The result implies that NOx reduction is better when reburn/total fuel mass fraction is increased, i.e. fuel lean inlet condition. This is consistent with the results of Ahn et al. [8]. In a practical combustion system, a fuel lean inlet operation may result in a low heat release in the primary combustion zone which may influence the combustion efficiency. Therefore, the highest reburn/total fuel mass fraction is restricted to 3% in this study. For reburn hole size of.1m, it can be observed from Fig.6(b) that NOx reduction is better than for reburn hole size of.4m. As mentioned in last section, NOx reduction is better for a smaller reburn hole because the injection velocity and penetration depth of the reburn fuel and air are larger and this is conducive to the NOx reduction reaction of the reburn fuel and air. In addition, because the NOx reduction reaction is more complete for a smaller reburn hole, NOx concentration nearly coincides for different reburn/total fuel mass fractions. (b) D=.4m Fig. 4 Temperature profiles at the symmetric plane (z=) for different reburn hole sizes 4 reburn / total fuel = 3% reburn / total fuel = 2% reburn / total fuel = % Fig. shows the comparison of cross-sectional average temperature for different reburn hole size. It is seen that temperature arises near the reburn fuel injection location (x=21.6m). This is consistent with the results of Fig.4(b) which show that a larger reburn hole results in a local high temperature region near the reburn fuel hole because the injection velocity and penetration depth of the reburn fuel and air are smaller and therefore the reburn fuel concentrates near the reburn fuel hole. 3 2 (a) D=.4m reburn / tatal fuel = 3% reburn / tatal fuel = 2% reburn / tatal fuel = % D=.1m D=.2m D=.3m D=.4m Fig. Comparison of cross-sectional average temperature for different reburn hole size (b) D=.1m 9

5 4th International Conference on Mechanical, Automotive and Materials Engineering (ICMAME'214) Jan , 214 Bangkok (Thailand) Fig. 6 Comparison of cross-sectional average NO concentration for different reburn fuel fractions Fig.7 shows the comparison of cross-sectional average temperature for different reburn/total fuel mass fractions. For reburn hole size of.4m, because the injection velocity and penetration depth of the reburn fuel and air are smaller and therefore the fuel concentrates near the reburn fuel hole, temperature arises near the reburn fuel hole (x=21.6m), as shown in Fig.7(a). On the other hand, for reburn hole size of.1m, the reburn fuel and air do not concentrate near the reburn holes because their injection velocity and penetration depth are larger, temperature is lower than for reburn hole size of.4m, as shown in Fig.7(b). In addition, because the reaction of reburn fuel and air is more complete for a smaller reburn hole, the temperatures for different reburn/total fuel mass fractions do not differ significantly. In a practical combustion system, heat release occurs mainly in the primary combustion zone. The major function of the reburn zone is to convert NOx to N 2. Therefore, a lower reburn/total fuel mass fraction yields a higher temperature due to its higher heat release. reburn / total fuel = 3% reburn / total fuel = 2% 9 reburn / total fuel = % 8 Fig.8 shows the comparison of cross-sectional average NO concentration for different reburn air fractions. The reburn fuel is injected from the first reburn hole and the reburn/total fuel mass fraction is kept at 3%. The reburn air is injected from the second reburn hole and three reburn/total air mass fractions, %, 2 and 3%, are examined. It is seen that NOx reduction is best for reburn/total air mass fraction of %. The result implies that NOx reduction is better when reburn/total air mass fraction is decreased, i.e. fuel lean inlet condition. This is consistent with the results of different reburn/total fuel mass fractions discussed in this section and the results of Ahn et al. [8]. In addition, it can be observed by comparing Figs.8(a) and (b) that NOx reduction is better for a smaller reburn hole size and this is consistent with the results in previous section reburn / total air = 3% reburn / total air = 2% reburn / total air = % 7 6 (a) D=.4m (a) D=.4m reburn / total fuel = 3% reburn / total fuel = 2% reburn / total fuel = % reburn / total air = 3% reburn / total air = 2% reburn / total air = % (b) D=.1m Fig. 8 Comparison of cross-sectional average NO concentration for different reburn/total air mass fractions 3 (b) D=.1m Fig. 7 Comparison of cross-sectional average temperature for different reburn/tatal fuel mass fractions Fig.9 shows the comparison of cross-sectional average temperature for different reburn/total air mass fractions. For reburn hole size of.4m, because the injection velocity and penetration depth of the reburn fuel and air are smaller and therefore the fuel concentrates near the reburn fuel hole, temperature arises near the reburn fuel hole (x=21.6m), as shown in Fig.9(a). On the other hand, for reburn hole size of.1m, the reburn fuel and air do not concentrate near the reburn

6 4th International Conference on Mechanical, Automotive and Materials Engineering (ICMAME'214) Jan , 214 Bangkok (Thailand) holes because their injection velocity and penetration depth are larger, temperature is lower than for reburn hole size of.4m, as shown in Fig.9(b). C. Effect of Reburn Hole Positions And Numbers Fig. shows the comparison of cross-sectional average NO concentration for different reburn hole positions. In previous sections we have demonstrated that NOx reduction is better when reburn fuel is increased or reburn air is decreased. Therefore, we adopt a reburn/total fuel mass fraction of 3% and a reburn/total air mass fraction of % for discussing the effect of reburn hole positions and numbers. For reburn hole size of.4m, it can be observed from Fig.(a) that NOx reduction is better when the reburn fuel is injected from an upstream region of strong recirculation and when the reburn air hole is closer to the reburn fuel hole. This is because a reburn hole in an upstream position is in a strong recirculation flow region and this is conducive to the NOx reduction reaction by reburn. On the other hand, a reburn hole in a downstream position is in a redevelopping flow region and this is not conducive to the NOx reduction reaction by reburn. For reburn hole size of.1m, because the NOx reduction reaction is more complete, it can be observed from Fig.(b) that the influence of reburn hole position on NOx concentration is not obvious and the NOx concentrations for different reburn hole positions nearly coincide. reburn / total air = 3% reburn / total air = 2% 9 reburn / total air = % (a) D=.4m reburn / total air = 3% reburn / total air = 2% 9 reburn / total air = % 3 (b) D=.1m Fig. 9 Comparison of cross-sectional average temperature for different reburn/total air mass fractions reburn fuel hole : No.1 ; reburn air hole : No.2 reburn fuel hole : No.1 ; reburn air hole : No.3 reburn fuel hole : No.1 ; reburn air hole : No.4 reburn fuel hole : No.2 ; reburn air hole : No.3 reburn fuel hole : No.2 ; reburn air hole : No.4 reburn fuel hole : No.3 ; reburn air hole : No (a) D=.4m reburn fuel hole : No.1 ; reburn air hole : No.2 reburn fuel hole : No.1 ; reburn air hole : No.3 reburn fuel hole : No.1 ; reburn air hole : No.4 reburn fuel hole : No.2 ; reburn air hole : No.3 4 reburn fuel hole : No.2 ; reburn air hole : No.4 reburn fuel hole : No.3 ; reburn air hole : No.4 (b) D=.1m Fig. Comparison of cross-sectional average NO concentration for different reburn hole positions Fig.11 shows the comparison of cross-sectional average temperature. It is observed that, for reburn hole size of.1m, the temperature is lower than that for reburn hole size of.4m. Further, as discussed in previous sections, because the injection velocity and penetration depth of the reburn fuel and air are larger and therefore the fuel and air do not concentrate near the reburn fuel hole, there is no local high temperature region for reburn hole size of.1m. In addition, because the reaction of reburn fuel and air is more complete for a smaller reburn hole, the temperatures for different reburn hole positions do not differ significantly. On the other hand, for reburn hole size of.4m, because the injection velocity and penetration depth of the reburn fuel and air are smaller, the reburn fuel concentrates and therefore temperature arises near the reburn fuel hole (x=21.6m,.43mand 31.99m), as shown in Fig.11(a). From Fig.11(a), it is also observed that the temperature rise near the first reburn fuel hole is the highest. This is because the first reburn fuel hole is located in a region of stronger recirculation which is conducive to the reburn reaction. In addition, it is also observed that the temperature decreases first and arises then near the reburn air hole (x=.43m, 31.99m and m). 11

7 4th International Conference on Mechanical, Automotive and Materials Engineering (ICMAME'214) Jan , 214 Bangkok (Thailand) This is because the reburn air is injected at atmospheric temperature and therefore the temperature decreases first, but when the reburn air reacts with the reburn fuel, the temperature arises then due to the reaction heat release reburn fuel hole : No.1 ; reburn air hole : No.2 reburn fuel hole : No.1 ; reburn air hole : No.3 reburn fuel hole : No.1 ; reburn air hole : No.4 reburn fuel hole : No.2 ; reburn air hole : No.3 reburn fuel hole : No.2 ; reburn air hole : No.4 reburn fuel hole : No.3 ; reburn air hole : No (a) D=.4m reburn fuel hole : No.1 ; reburn air hole : No.2 reburn fuel hole : No.1 ; reburn air hole : No.3 reburn fuel hole : No.1 ; reburn air hole : No.4 reburn fuel hole : No.2 ; reburn air hole : No.3 reburn fuel hole : No.2 ; reburn air hole : No.4 reburn fuel hole : No.3 ; reburn air hole : No.4 3 (b) D=.1m Fig. 11 Comparison of cross-sectional average temperature for different reburn hole positions Fig.12 shows the comparison of cross-sectional average NO concentration for different number of reburn holes. From the above discussion, we have demonstrated that NOx reduction is better when reburn fuel is injected from the first reburn hole and reburn air is injected from the second reburn hole and when the reburn/total fuel mass fraction is 3% and the reburn/total air mass fraction is %. Therefore, we adopt this reburn hole arrangement and mass fractions for discussing the effect of number of reburn holes. We compare a three-reburn-hole arrangement, as shown in Fig.13, with the conventional single-reburn-hole arrangement, as shown in Fig.2(a). For the purpose of the same basis of comparison, the reburn fuel and air mass flow rates for the two arrangements are identical. Therefore, the reburn fuel and air mass flowrates in each hole of the three-reburn-hole arrangement is only 1/3 of that in each hole of the single-reburn-hole arrangement. From Fig.12, it is seen that a single-reburn-hole arrangement is better for NOx reduction. This is because, as mentioned above, the reburn fuel and air mass flowrates in each hole of the three-reburn-hole arrangement is only 1/3 of that in each hole of the single-reburn-hole arrangement, the penetration depth of the reburn fuel and air is smaller for the three-reburn-hole arrangement and therefore the NOx reduction by reburn is less complete. The temperature rise near the reburn fuel hole (x=21.6m) can also be seen from Fig.14 which shows the comparison of cross-sectional average temperature for different number of reburn holes. It can be seen from Fig.14 that the temperature rise for the three-reburn-hole arrangement is higher than that for the single-reburn-hole arrangement. IV. CONCLUSION In this study, NOx reduction by reburning in a CO boiler is investigated numerically. The combustion and fluid flow in the FPC CO boiler is examined with emphasis on the effect of reburning upon NOx reduction. From the simulation results, it is found that NOx reduction occurs mainly behind the DeNOx section where recirculation is prominent. NOx reduction is closely connected with the reburn fuel penetration depth. For a smaller reburn hole, the reburn fuel penetration depth is larger and this yields a better NOx reduction. On the other hand, the penetration depth is smaller for a larger reburn hole and this leads to a local high temperature region near the reburn hole and a worse NOx reduction. NOx reduction is better for a lower primary/reburn fuel ratio and a higher inlet/reburn air ratio. In addition, NOx reduction is better when the reburn air hole is closer to the reburn fuel hole and when the reburn fuel is injected from an upstream region of strong recirculation. The cross-sectional average temperature arises near the reburn fuel hole and the temperature rise is higher when the reburn fuel is injected from an upstream region of strong recirculation. In addition, the cross-sectional average temperature decreases first and arises then near the reburn air hole. Finally, based on a specified reburn fuel and air flow rates, a single-reburn-hole arrangement yields lower NOx concentration and temperature than a three-reburn-holes arrangement does single renburn hole ; D=.1m three renburn holes ; D=.1m (a) D=.1m 12

8 4th International Conference on Mechanical, Automotive and Materials Engineering (ICMAME'214) Jan , 214 Bangkok (Thailand) 4 single renburn hole ; D=.4m three renburn holes ; D=.4m single reburn hole ; D=.1m three reburn holes ; D=.1m 4 (b) D=.4m Fig. 12 Comparison of cross-sectional average NO concentration for different number of reburn holes 3 (b) D=.1m Fig. 14 Comparison of cross-sectional average temperature for different number of reburn holes ACKNOWLEDGMENT The author gratefully acknowledges the grant support from the National Science Council, Taiwan, R.O.C., under the contract NSC E--31. Fig. 13 Illustration of the three-reburn-hole arrangement single reburn hole ; D=.4m three reburn holes ; D=.4m 3 (a) D=.4m REFERENCES [1] P. Lu, Y. Wang, F. Lu and Y. Liu, Cleaner Combustion and Sustainable World, Qi H and Zhao B (eds.), Springer-Verlag Berlin Heidelberg and Tsinghua University Press, 213, pp [2] H. Y. Kim, S. W. Baek and S. W. Kim, Investigation of fuel lean reburning process in a 1. MW boiler, Applied Energy, vol.89, pp , 212. [3] J. Giménez-López, V. Aranda, A. Millera, R. Bilbao and M. U. Alzueta, An experimental parametric study of gas reburning under conditions of interest for oxy-fuel combustion, Fuel Processing Technology, vol.92, pp.82-89, 211. [4] H. Oh, K. Annamalai and J. Sweeten, Reburning of cattle manure-based biomass with coals in a small scale boiler burner facility for NOx and Hg reduction, in Proceedings of the ASME/JSME 211 8th Thermal Engineering Joint Conference, AJTEC211, Honolulu, Hawaii, USA, March 13-17, 211. [] H. Y. Kim and S. W. Baek, Investigation of fuel lean reburning, in Proceedings of the ASME 29 International Mechanical Engineering Congress & Exposition, IMECE29, Lake Buena Vista, Florida, USA, November [6] Q. H. Nguyen, W. Zhou, G. Xu, L. W. Swanson and D. K. Moyeda, Comprehensive modeling study on fuel gas reburn in an opposed wall fired boiler, in Proceedings of IMECE27, 27 ASME International Mechanical Engineering Congress and Exposition, November 11-, 27, Seattle, Washington, USA. [7] D. J. Dimitriou, N. Kandamby and F. C. Lockwood, A mathematical modelling technique for gaseous and solid fuel reburning in pulverised coal combustors, Fuel, vol.82, pp , 23. [8] K. Y. Ahn, H. S. Kim, M. G. Son, H. K. Kim and Y. M. Kim, An experimental study on the combustion characteristics low NOx burner using reburning technology, KSME International Journal, vol.16, no.7, pp.9-98, 22. [9] N. Kandamby, G. Lazopoulos, F. C. Lockwood, A. Perera, and L. Vigevano, Mathematical modeling of NOx emission reduction by the use of reburn technology in utility boilers, presented at the ASME Int. Joint Power Generation Conference and Exhibition, Houston, Texas, [] C. L. Yeh, Numerical analysis of the combustion and fluid flow in a carbon monoxide boiler, International Journal of Heat and Mass Transfer, vol.9, pp , April,

Effects of Dilution Flow Balance and Double-wall Liner on NOx Emission in Aircraft Gas Turbine Engine Combustors

Effects of Dilution Flow Balance and Double-wall Liner on NOx Emission in Aircraft Gas Turbine Engine Combustors Effects of Dilution Flow Balance and Double-wall Liner on NOx Emission in Aircraft Gas Turbine Engine Combustors 9 HIDEKI MORIAI *1 Environmental regulations on aircraft, including NOx emissions, have

More information

Numerical Investigation of the Effect of Excess Air and Thermal Power Variation in a Liquid Fuelled Boiler

Numerical Investigation of the Effect of Excess Air and Thermal Power Variation in a Liquid Fuelled Boiler Proceedings of the World Congress on Momentum, Heat and Mass Transfer (MHMT 16) Prague, Czech Republic April 4 5, 2016 Paper No. CSP 105 DOI: 10.11159/csp16.105 Numerical Investigation of the Effect of

More information

CFD Analysis and Comparison of Fluid Flow Through A Single Hole And Multi Hole Orifice Plate

CFD Analysis and Comparison of Fluid Flow Through A Single Hole And Multi Hole Orifice Plate CFD Analysis and Comparison of Fluid Flow Through A Single Hole And Multi Hole Orifice Plate Malatesh Barki. 1, Ganesha T. 2, Dr. M. C. Math³ 1, 2, 3, Department of Thermal Power Engineering 1, 2, 3 VTU

More information

Automatic CFD optimisation of biomass combustion plants. Ali Shiehnejadhesar

Automatic CFD optimisation of biomass combustion plants. Ali Shiehnejadhesar Automatic CFD optimisation of biomass combustion plants Ali Shiehnejadhesar IEA Bioenergy Task 32 workshop Thursday 6 th June 2013 Contents Scope of work Methodology CFD model for biomass grate furnaces

More information

Australian Journal of Basic and Applied Sciences

Australian Journal of Basic and Applied Sciences AENSI Journals Australian Journal of Basic and Applied Sciences ISSN:1991-8178 Journal home page: www.ajbasweb.com Efficient and Environmental Friendly NO x Emission Reduction Design of Aero Engine Gas

More information

CFD Investigation of Influence of Tube Bundle Cross-Section over Pressure Drop and Heat Transfer Rate

CFD Investigation of Influence of Tube Bundle Cross-Section over Pressure Drop and Heat Transfer Rate CFD Investigation of Influence of Tube Bundle Cross-Section over Pressure Drop and Heat Transfer Rate Sandeep M, U Sathishkumar Abstract In this paper, a study of different cross section bundle arrangements

More information

Numerical simulation of detonation inception in Hydrogen / air mixtures

Numerical simulation of detonation inception in Hydrogen / air mixtures Numerical simulation of detonation inception in Hydrogen / air mixtures Ionut PORUMBEL COMOTI Non CO2 Technology Workshop, Berlin, Germany, 08.03.2017 09.03.2017 Introduction Objective: Development of

More information

Homogeneous Charge Compression Ignition combustion and fuel composition

Homogeneous Charge Compression Ignition combustion and fuel composition Loughborough University Institutional Repository Homogeneous Charge Compression Ignition combustion and fuel composition This item was submitted to Loughborough University's Institutional Repository by

More information

POSIBILITIES TO IMPROVED HOMOGENEOUS CHARGE IN INTERNAL COMBUSTION ENGINES, USING C.F.D. PROGRAM

POSIBILITIES TO IMPROVED HOMOGENEOUS CHARGE IN INTERNAL COMBUSTION ENGINES, USING C.F.D. PROGRAM POSIBILITIES TO IMPROVED HOMOGENEOUS CHARGE IN INTERNAL COMBUSTION ENGINES, USING C.F.D. PROGRAM Alexandru-Bogdan Muntean *, Anghel,Chiru, Ruxandra-Cristina (Dica) Stanescu, Cristian Soimaru Transilvania

More information

Marc ZELLAT, Driss ABOURI and Stefano DURANTI CD-adapco

Marc ZELLAT, Driss ABOURI and Stefano DURANTI CD-adapco 17 th International Multidimensional Engine User s Meeting at the SAE Congress 2007,April,15,2007 Detroit, MI RECENT ADVANCES IN DIESEL COMBUSTION MODELING: THE ECFM- CLEH COMBUSTION MODEL: A NEW CAPABILITY

More information

The influence of Air Nozzles Shape on the NOx Emission in the Large-Scale 670 MWT CFB Boiler

The influence of Air Nozzles Shape on the NOx Emission in the Large-Scale 670 MWT CFB Boiler Refereed Proceedings The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering Engineering Conferences International Year 2007 The influence of Air Nozzles Shape on the

More information

CFD ANALYSIS ON LOUVERED FIN

CFD ANALYSIS ON LOUVERED FIN CFD ANALYSIS ON LOUVERED FIN P.Prasad 1, L.S.V Prasad 2 1Student, M. Tech Thermal Engineering, Andhra University, Visakhapatnam, India 2Professor, Dept. of Mechanical Engineering, Andhra University, Visakhapatnam,

More information

International Journal of Scientific & Engineering Research, Volume 5, Issue 7, July-2014 ISSN

International Journal of Scientific & Engineering Research, Volume 5, Issue 7, July-2014 ISSN ISSN 9-5518 970 College of Engineering Trivandrum Department of Mechanical Engineering arundanam@gmail.com, arjunjk91@gmail.com Abstract This paper investigates the performance of a shock tube with air

More information

Perfectly Stirred Reactor Network Modeling of NOx and CO Emissions from a Gas Turbine Combustor with Water Addition

Perfectly Stirred Reactor Network Modeling of NOx and CO Emissions from a Gas Turbine Combustor with Water Addition Perfectly Stirred Reactor Network Modeling of NOx and CO Emissions from a Gas Turbine Combustor with Water Addition Abstract For Submission in Partial Fulfillment of the UTSR Fellowship Program Andrew

More information

Effect of Fuel Lean Reburning Process on NOx Reduction and CO Emission

Effect of Fuel Lean Reburning Process on NOx Reduction and CO Emission Effect of Fuel Lean Reburning Process on NOx Reduction and CO Emission Changyeop Lee, Sewon Kim Digital Open Science Index, Energy and Power Engineering waset.org/publication/18 Abstract Reburning is a

More information

Numerical Simulation of the Thermoelectric Model on Vehicle Turbocharged Diesel Engine Intercooler

Numerical Simulation of the Thermoelectric Model on Vehicle Turbocharged Diesel Engine Intercooler Research Journal of Applied Sciences, Engineering and Technology 6(16): 3054-3059, 013 ISSN: 040-7459; e-issn: 040-7467 Maxwell Scientific Organization, 013 Submitted: January 1, 013 Accepted: January

More information

Marc ZELLAT, Driss ABOURI, Thierry CONTE and Riyad HECHAICHI CD-adapco

Marc ZELLAT, Driss ABOURI, Thierry CONTE and Riyad HECHAICHI CD-adapco 16 th International Multidimensional Engine User s Meeting at the SAE Congress 2006,April,06,2006 Detroit, MI RECENT ADVANCES IN SI ENGINE MODELING: A NEW MODEL FOR SPARK AND KNOCK USING A DETAILED CHEMISTRY

More information

FLAME COOLING AND RESIDENCE TIME EFFECT ON NO x AND CO EMISSION IN A GAS TURBINE COMBUSTOR

FLAME COOLING AND RESIDENCE TIME EFFECT ON NO x AND CO EMISSION IN A GAS TURBINE COMBUSTOR FLAME COOLING AND RESIDENCE TIME EFFECT ON NO x AND CO EMISSION IN A GAS TURBINE COMBUSTOR MOHAMED S. T. ZAWIA Engineering College Tajoura Mech. Eng. Dept. El-Fateh University P.O Box 30797 Libya E-mail

More information

Experimental Testing of a Rotating Detonation Engine Coupled to Nozzles at Conditions Approaching Flight

Experimental Testing of a Rotating Detonation Engine Coupled to Nozzles at Conditions Approaching Flight 25 th ICDERS August 2 7, 205 Leeds, UK Experimental Testing of a Rotating Detonation Engine Coupled to Nozzles at Conditions Approaching Flight Matthew L. Fotia*, Fred Schauer Air Force Research Laboratory

More information

NUMERICAL ANALYSIS OF INFLUENCE OF SOFA ON NOX EMISSIONS FOR PULVERIZED COAL BOILER

NUMERICAL ANALYSIS OF INFLUENCE OF SOFA ON NOX EMISSIONS FOR PULVERIZED COAL BOILER Proceedings of the ASME 216 International Mechanical Engineering Congress and Exposition IMECE216 November 11-17, 216, Phoenix, Arizona, USA IMECE216-681 NUMERICAL ANALYSIS OF INFLUENCE OF SOFA ON NOX

More information

Chapter 5 Oxygen Based NOx Control

Chapter 5 Oxygen Based NOx Control Chapter 5 Oxygen Based NOx Control Editor s Note: Chapter 5 is written by Dr. Brian Doyle and is drawn primarily from personal knowledge and the material developed for the NOx Emissions course offered

More information

C C A. Combustion Components Associates, Inc.

C C A. Combustion Components Associates, Inc. C C A Combustion Components Associates, Inc. www.cca-inc.net About CCA CCA is a global provider of combustion control technologies to reduce NOx, particulate matter (PM), unburned carbon and CO emissions

More information

STATE OF THE ART OF PLASMATRON FUEL REFORMERS FOR HOMOGENEOUS CHARGE COMPRESSION IGNITION ENGINES

STATE OF THE ART OF PLASMATRON FUEL REFORMERS FOR HOMOGENEOUS CHARGE COMPRESSION IGNITION ENGINES Bulletin of the Transilvania University of Braşov Vol. 3 (52) - 2010 Series I: Engineering Sciences STATE OF THE ART OF PLASMATRON FUEL REFORMERS FOR HOMOGENEOUS CHARGE COMPRESSION IGNITION ENGINES R.

More information

Foundations of Thermodynamics and Chemistry. 1 Introduction Preface Model-Building Simulation... 5 References...

Foundations of Thermodynamics and Chemistry. 1 Introduction Preface Model-Building Simulation... 5 References... Contents Part I Foundations of Thermodynamics and Chemistry 1 Introduction... 3 1.1 Preface.... 3 1.2 Model-Building... 3 1.3 Simulation... 5 References..... 8 2 Reciprocating Engines... 9 2.1 Energy Conversion...

More information

CONJUGATE HEAT TRANSFER ANALYSIS OF HELICAL COIL HEAT EXCHANGE USING CFD

CONJUGATE HEAT TRANSFER ANALYSIS OF HELICAL COIL HEAT EXCHANGE USING CFD CONJUGATE HEAT TRANSFER ANALYSIS OF HELICAL COIL HEAT EXCHANGE USING CFD Rudragouda R Patil 1, V Santosh Kumar 2, R Harish 3, Santosh S Ghorpade 4 1,3,4 Assistant Professor, Mechanical Department, Jayamukhi

More information

Development of the Micro Combustor

Development of the Micro Combustor Development of the Micro Combustor TAKAHASHI Katsuyoshi : Advanced Technology Department, Research & Engineering Division, Aero-Engine & Space Operations KATO Soichiro : Doctor of Engineering, Heat & Fluid

More information

COMPUTATIONAL FLOW MODEL OF WESTFALL'S 2900 MIXER TO BE USED BY CNRL FOR BITUMEN VISCOSITY CONTROL Report R0. By Kimbal A.

COMPUTATIONAL FLOW MODEL OF WESTFALL'S 2900 MIXER TO BE USED BY CNRL FOR BITUMEN VISCOSITY CONTROL Report R0. By Kimbal A. COMPUTATIONAL FLOW MODEL OF WESTFALL'S 2900 MIXER TO BE USED BY CNRL FOR BITUMEN VISCOSITY CONTROL Report 412509-1R0 By Kimbal A. Hall, PE Submitted to: WESTFALL MANUFACTURING COMPANY May 2012 ALDEN RESEARCH

More information

Effect of Stator Shape on the Performance of Torque Converter

Effect of Stator Shape on the Performance of Torque Converter 16 th International Conference on AEROSPACE SCIENCES & AVIATION TECHNOLOGY, ASAT - 16 May 26-28, 2015, E-Mail: asat@mtc.edu.eg Military Technical College, Kobry Elkobbah, Cairo, Egypt Tel : +(202) 24025292

More information

Fig 2: Grid arrangements for axis-symmetric Rocket nozzle.

Fig 2: Grid arrangements for axis-symmetric Rocket nozzle. CFD Analysis of Rocket-Ramjet Combustion Chamber 1 Ms. P.Premalatha, Asst. Prof., PSN College of Engineering and Technology, Tirunelveli. 1prema31194@gmail.com 1 +91-90475 26413 2 Ms. T. Esakkiammal, Student,

More information

Design and Test of Transonic Compressor Rotor with Tandem Cascade

Design and Test of Transonic Compressor Rotor with Tandem Cascade Proceedings of the International Gas Turbine Congress 2003 Tokyo November 2-7, 2003 IGTC2003Tokyo TS-108 Design and Test of Transonic Compressor Rotor with Tandem Cascade Yusuke SAKAI, Akinori MATSUOKA,

More information

Experimental Study of LPG Diffusion Flame at Elevated Preheated Air Temperatures

Experimental Study of LPG Diffusion Flame at Elevated Preheated Air Temperatures Experimental Study of LPG Diffusion Flame at Elevated Preheated Air Temperatures A. A. Amer, H. M. Gad, I. A. Ibrahim, S. I. Abdel-Mageed, T. M. Farag Abstract This paper represents an experimental study

More information

CFD Analysis of Oil Discharge Rate in Rotary Compressor

CFD Analysis of Oil Discharge Rate in Rotary Compressor Purdue University Purdue e-pubs International Compressor Engineering Conference School of Mechanical Engineering CFD Analysis of Oil Discharge Rate in Rotary Compressor Liying Deng haitunsai@.com Shebing

More information

Vedant D. Vyas 1, Dr. D. B. Jani. 2 1,2 PG research scholar (CAD/CAM) Mechanical engineering department, GEC-Dahod. IJRASET: All Rights are Reserved

Vedant D. Vyas 1, Dr. D. B. Jani. 2 1,2 PG research scholar (CAD/CAM) Mechanical engineering department, GEC-Dahod. IJRASET: All Rights are Reserved CFD Simulation of Air Flow in CFBC Boiler under Different Geometry of Nozzle Grid Vedant D. Vyas 1, Dr. D. B. Jani. 2 1,2 PG research scholar (CAD/CAM) Mechanical engineering department, GEC-Dahod. Abstract:

More information

Research Article Effect of Dual Fuel Nozzle Structures on Combustion Flow Field in CRGT Combustor

Research Article Effect of Dual Fuel Nozzle Structures on Combustion Flow Field in CRGT Combustor Mathematical Problems in Engineering Volume 2013, Article ID 913837, 11 pages http://dx.doi.org/10.1155/2013/913837 Research Article Effect of Dual Fuel Nozzle Structures on Combustion Flow Field in CRGT

More information

Numerical Simulation on Erosion of Drain Valve Liangliang Xu1,a, Zhengdong Wang2,b, Xinhai Yu3,c, Cong Zeng4,d

Numerical Simulation on Erosion of Drain Valve Liangliang Xu1,a, Zhengdong Wang2,b, Xinhai Yu3,c, Cong Zeng4,d 3rd International Conference on Mechatronics and Information Technology (ICMIT 2016) Numerical Simulation on Erosion of Drain Valve Liangliang Xu1,a, Zhengdong Wang2,b, Xinhai Yu3,c, Cong Zeng4,d 1 2 3

More information

Development of a Non-Catalytic JP-8 Reformer

Development of a Non-Catalytic JP-8 Reformer 2018 NDIA GROUND VEHICLE SYSTEMS ENGINEERING AND TECHNOLOGY SYMPOSIUM POWER & MOBILITY (P&M) TECHNICAL SESSION AUGUST 7-9, 2018 - NOVI, MICHIGAN Development of a Non-Catalytic JP-8 Reformer Chien-Hua Chen,

More information

Numerical Optimization of HC Supply for HC-DeNOx System (2) Optimization of HC Supply Control

Numerical Optimization of HC Supply for HC-DeNOx System (2) Optimization of HC Supply Control 40 Special Issue Challenges to Realizing Clean High-Performance Diesel Engines Research Report Numerical Optimization of HC Supply for HC-DeNOx System (2) Optimization of HC Supply Control Matsuei Ueda

More information

Effect of concave plug shape of a control valve on the fluid flow characteristics using computational fluid dynamics

Effect of concave plug shape of a control valve on the fluid flow characteristics using computational fluid dynamics Effect of concave plug shape of a control valve on the fluid flow characteristics using computational fluid dynamics Yasser Abdel Mohsen, Ashraf Sharara, Basiouny Elsouhily, Hassan Elgamal Mechanical Engineering

More information

in ultra-low NOx lean combustion grid plate

in ultra-low NOx lean combustion grid plate CFD predictions of aerodynamics and mixing in ultra-low NOx lean combustion grid plate flame stabilizer JOSÉ RAMÓN QUIÑONEZ ARCE, DR. ALAN BURNS, PROF. GORDON E. ANDREW S. SCHOOL OF CHEMICAL AND PROCESS

More information

Numerical Simulation on the Pattern Factor of the Annular Combustor

Numerical Simulation on the Pattern Factor of the Annular Combustor Numerical Simulation on the Pattern Factor of the Annular Combustor Balakrishnan B.M 1, Mohana Priya G 2, Revathi M 3 Department of Mechanical Engineering, Mahendra Engineering College, Salem, India 1

More information

Development of a two-dimensional internal combustion engines model using CFD for education purpose

Development of a two-dimensional internal combustion engines model using CFD for education purpose 20th International Congress on Modelling and Simulation, Adelaide, Australia, 1 6 December 2013 www.mssanz.org.au/modsim2013 Development of a two-dimensional internal combustion engines model using CFD

More information

Heat Transfer Enhancement for Double Pipe Heat Exchanger Using Twisted Wire Brush Inserts

Heat Transfer Enhancement for Double Pipe Heat Exchanger Using Twisted Wire Brush Inserts Heat Transfer Enhancement for Double Pipe Heat Exchanger Using Twisted Wire Brush Inserts Deepali Gaikwad 1, Kundlik Mali 2 Assistant Professor, Department of Mechanical Engineering, Sinhgad College of

More information

Research on Pressure Loss for the Reverse-Flow Extended-Tube Muffler*

Research on Pressure Loss for the Reverse-Flow Extended-Tube Muffler* Research on Pressure Loss for the Reverse-Flow Extended-Tube Muffler* Jie Yao 1, Zhao-Xiang Deng 1,2, Pei-Ran Li 1, and Liang Yang 2 1 State Key Laboratory of Mechanical Transmission, Chongqing University,

More information

A Study on Performance Enhancement of Heat Exchanger in Thermoelectric Generator using CFD

A Study on Performance Enhancement of Heat Exchanger in Thermoelectric Generator using CFD IJIRST International Journal for Innovative Research in Science & Technology Volume 2 Issue 10 March 2016 ISSN (online): 2349-6010 A Study on Performance Enhancement of Heat Exchanger in Thermoelectric

More information

STUDY OF A NEW COMBUSTION CHAMBER CONCEPT WITH PREMIXING (PREVAPORISING) DELIVERY TUBES

STUDY OF A NEW COMBUSTION CHAMBER CONCEPT WITH PREMIXING (PREVAPORISING) DELIVERY TUBES STUDY OF A NEW COMBUSTION CHAMBER CONCEPT WITH PREMIXING (PREVAPORISING) DELIVERY TUBES Radek Hybl Aeronautical Research and Test Institute VZLU, a.s. CTU in Prague, Faculty of Mechanical Engineering,

More information

Analysis of Air Flow and Heat Transfer in Ventilated Disc Brake Rotor with Diamond Pillars

Analysis of Air Flow and Heat Transfer in Ventilated Disc Brake Rotor with Diamond Pillars International Journal of Current Engineering and Technology E-ISSN 2277 4106, P-ISSN 2347 5161 2016 INPRESSCO, All Rights Reserved Available at http://inpressco.com/category/ijcet Research Article Analysis

More information

TECHNICAL PUBLICATION

TECHNICAL PUBLICATION TECHNICAL PUBLICATION Efficient, Low Emissions and Fuel Flexible Today s Stoker-Fired Biomass Systems Technology by Kevin Toupin Director, Boiler Equipment Riley Power Inc. Presented at International Biomass

More information

CRN Application to Predict the NOx Emissions for Industrial Combustion Chamber

CRN Application to Predict the NOx Emissions for Industrial Combustion Chamber CRN Application to Predict the NOx Emissions for Industrial Combustion Chamber Nguyen Thanh Hao 1 & Park Jungkyu 2 1 Heat and Refrigeration Faculty, Industrial University of HoChiMinh City, HoChiMinh,

More information

Parameters Matching and Simulation on a Hybrid Power System for Electric Bulldozer Hong Wang 1, Qiang Song 2,, Feng-Chun SUN 3 and Pu Zeng 4

Parameters Matching and Simulation on a Hybrid Power System for Electric Bulldozer Hong Wang 1, Qiang Song 2,, Feng-Chun SUN 3 and Pu Zeng 4 2nd International Conference on Electronic & Mechanical Engineering and Information Technology (EMEIT-2012) Parameters Matching and Simulation on a Hybrid Power System for Electric Bulldozer Hong Wang

More information

Simulation Studies on the Effect of Porous Twisted Plate Inserts on the Performance of Fire Tube Steam Packaged Boiler

Simulation Studies on the Effect of Porous Twisted Plate Inserts on the Performance of Fire Tube Steam Packaged Boiler Simulation Studies on the Effect of Porous Twisted Plate Inserts on the Performance of Fire Tube Steam Packaged Boiler S. Hassan *,a, M. K. Roslim b and R. M. Zain c Mechanical Engineering Department,

More information

Internal Combustion Engines

Internal Combustion Engines Emissions & Air Pollution Lecture 3 1 Outline In this lecture we will discuss emission control strategies: Fuel modifications Engine technology Exhaust gas aftertreatment We will become particularly familiar

More information

Comparison of Swirl, Turbulence Generating Devices in Compression ignition Engine

Comparison of Swirl, Turbulence Generating Devices in Compression ignition Engine Available online atwww.scholarsresearchlibrary.com Archives of Applied Science Research, 2016, 8 (7):31-40 (http://scholarsresearchlibrary.com/archive.html) ISSN 0975-508X CODEN (USA) AASRC9 Comparison

More information

Recent Advances in DI-Diesel Combustion Modeling in AVL FIRE A Validation Study

Recent Advances in DI-Diesel Combustion Modeling in AVL FIRE A Validation Study International Multidimensional Engine Modeling User s Group Meeting at the SAE Congress April 15, 2007 Detroit, MI Recent Advances in DI-Diesel Combustion Modeling in AVL FIRE A Validation Study R. Tatschl,

More information

CRN Application to Predict the NOx Emissions for Industrial Combustion Chamber

CRN Application to Predict the NOx Emissions for Industrial Combustion Chamber Asian Journal of Applied Science and Engineering, Volume 2, No 2/2013 ISSN 2305-915X(p); 2307-9584(e) CRN Application to Predict the NOx Emissions for Industrial Combustion Chamber Nguyen Thanh Hao 1,

More information

Retrofitting of Mitsubishi Low NOx System

Retrofitting of Mitsubishi Low NOx System 111 Retrofitting of Mitsubishi Low NOx System Susumu Sato *1 Yoshinori Kobayashi *1 Takao Hashimoto *2 Masahiko Hokano *2 Toshimitsu Ichinose *3 (MHI) has long been engaged in low NOx combustion R & D

More information

GEOMETRICAL PARAMETERS BASED OPTIMIZATION OF HEAT TRANSFER RATE IN DOUBLE PIPE HEAT EXCHANGER USING TAGUCHI METHOD D.

GEOMETRICAL PARAMETERS BASED OPTIMIZATION OF HEAT TRANSFER RATE IN DOUBLE PIPE HEAT EXCHANGER USING TAGUCHI METHOD D. ISSN 2277-2685 IJESR/March 2018/ Vol-8/Issue-3/18-24 D. Bahar et. al., / International Journal of Engineering & Science Research GEOMETRICAL PARAMETERS BASED OPTIMIZATION OF HEAT TRANSFER RATE IN DOUBLE

More information

EXPERIMENTAL INVESTIGATION OF THE EFFECT OF HYDROGEN BLENDING ON THE CONCENTRATION OF POLLUTANTS EMITTED FROM A FOUR STROKE DIESEL ENGINE

EXPERIMENTAL INVESTIGATION OF THE EFFECT OF HYDROGEN BLENDING ON THE CONCENTRATION OF POLLUTANTS EMITTED FROM A FOUR STROKE DIESEL ENGINE EXPERIMENTAL INVESTIGATION OF THE EFFECT OF HYDROGEN BLENDING ON THE CONCENTRATION OF POLLUTANTS EMITTED FROM A FOUR STROKE DIESEL ENGINE Haroun A. K. Shahad hakshahad@yahoo.com Department of mechanical

More information

Lecture 4 CFD for Bluff-Body Stabilized Flames

Lecture 4 CFD for Bluff-Body Stabilized Flames Lecture 4 CFD for Bluff-Body Stabilized Flames Bluff Body Stabilized flames with or without swirl are in many laboratory combustors Applications to ramjets, laboratory burners, afterburners premixed and

More information

Study on Flow Characteristic of Gear Pumps by Gear Tooth Shapes

Study on Flow Characteristic of Gear Pumps by Gear Tooth Shapes Journal of Applied Science and Engineering, Vol. 20, No. 3, pp. 367 372 (2017) DOI: 10.6180/jase.2017.20.3.11 Study on Flow Characteristic of Gear Pumps by Gear Tooth Shapes Wen Wang 1, Yan-Mei Yin 1,

More information

Development of In-Line Coldstart Emission Adsorber System (CSEAS) for Reducing Cold Start Emissions in 2 Stroke SI Engine

Development of In-Line Coldstart Emission Adsorber System (CSEAS) for Reducing Cold Start Emissions in 2 Stroke SI Engine Development of In-Line Coldstart Emission Adsorber System (CSEAS) for Reducing Cold Start Emissions in 2 Stroke SI Engine Wing Commander M. Sekaran M.E. Professor, Department of Aeronautical Engineering,

More information

A combustor design applied to the micro turbine. Taichung, Taiwan;

A combustor design applied to the micro turbine. Taichung, Taiwan; A combustor design applied to the micro turbine Chuan-Sheng Chen 1, Tzu-Erh Chen 1*, Hong-Chia Hong 1 1 Chung-Shan Institute of Science and Technology, Aeronautical Systems Research Division, Taichung,

More information

STUDY ON COMPACT HEAT EXCHANGER FOR VEHICULAR GAS TURBINE ENGINE

STUDY ON COMPACT HEAT EXCHANGER FOR VEHICULAR GAS TURBINE ENGINE Proceedings of Fifth International Conference on Enhanced, Compact and Ultra-Compact Heat Exchangers: Science, Engineering and Technology, Eds. R.K. Shah, M. Ishizuka, T.M. Rudy, and V.V. Wadekar, Engineering

More information

Influence of ANSYS FLUENT on Gas Engine Modeling

Influence of ANSYS FLUENT on Gas Engine Modeling Influence of ANSYS FLUENT on Gas Engine Modeling George Martinas, Ovidiu Sorin Cupsa 1, Nicolae Buzbuchi, Andreea Arsenie 2 1 CERONAV 2 Constanta Maritime University Romania georgemartinas@ceronav.ro,

More information

The influence of thermal regime on gasoline direct injection engine performance and emissions

The influence of thermal regime on gasoline direct injection engine performance and emissions IOP Conference Series: Materials Science and Engineering PAPER OPEN ACCESS The influence of thermal regime on gasoline direct injection engine performance and emissions To cite this article: C I Leahu

More information

International Journal of Scientific & Engineering Research, Volume 6, Issue 10, October ISSN

International Journal of Scientific & Engineering Research, Volume 6, Issue 10, October ISSN International Journal of Scientific & Engineering Research, Volume 6, Issue 0, October-205 97 The Effect of Pitch and Fins on Enhancement of Heat Transfer in Double Pipe Helical Heat Exchanger 2 Abdulhassan

More information

Thermal Performance and Light Distribution Improvement of a Lens-Attached LED Fog Lamp for Passenger Cars

Thermal Performance and Light Distribution Improvement of a Lens-Attached LED Fog Lamp for Passenger Cars Thermal Performance and Light Distribution Improvement of a Lens-Attached LED Fog Lamp for Passenger Cars W. S. Sim 1 and Y. L. Lee 2* 1 Department of Mechanical Engineering, Graduate school, Kongju National

More information

Enhance the Performance of Heat Exchanger with Twisted Tape Insert: A Review

Enhance the Performance of Heat Exchanger with Twisted Tape Insert: A Review Enhance the Performance of Heat Exchanger with Twisted Tape Insert: A Review M.J.Patel 1, K.S.Parmar 2, Umang R. Soni 3 1,2. M.E. Student, department of mechanical engineering, SPIT,Basna, Gujarat, India,

More information

Fuels, Combustion and Environmental Considerations in Industrial Gas Turbines - Introduction and Overview

Fuels, Combustion and Environmental Considerations in Industrial Gas Turbines - Introduction and Overview Brian M Igoe & Michael J Welch Fuels, Combustion and Environmental Considerations in Industrial Gas Turbines - Introduction and Overview Restricted Siemens AG 20XX All rights reserved. siemens.com/answers

More information

Effect of Reformer Gas on HCCI Combustion- Part II: Low Octane Fuels

Effect of Reformer Gas on HCCI Combustion- Part II: Low Octane Fuels Effect of Reformer Gas on HCCI Combustion- Part II: Low Octane Fuels Vahid Hosseini, and M David Checkel Mechanical Engineering University of Alberta, Edmonton, Canada project supported by Auto21 National

More information

Effect of Some Parameters on Exergetic Efficiency of a Combustion System in a Petrochemical Plant

Effect of Some Parameters on Exergetic Efficiency of a Combustion System in a Petrochemical Plant Effect of Some Parameters on Exergetic Efficiency of a Combustion System in a Petrochemical Plant Selay Sert 1, Firuz Balkan 2 MSc Student, Department of Chemical Engineering, Ege University, İzmir, Turkey

More information

Numerical Simulation of Gas Turbine Can Combustor Engine

Numerical Simulation of Gas Turbine Can Combustor Engine Numerical Simulation of Gas Turbine Can Combustor Engine CH UMAMAHESHWAR PRAVEEN 1*, A HEMANTH KUMAR YADAV 2 1. Engineer, CDG BOEING Company, Chennai, India. 2. B.Tech Aeronautical Engineer 2012 passout,

More information

NUMERICAL INVESTIGATION OF PISTON COOLING USING SINGLE CIRCULAR OIL JET IMPINGEMENT

NUMERICAL INVESTIGATION OF PISTON COOLING USING SINGLE CIRCULAR OIL JET IMPINGEMENT NUMERICAL INVESTIGATION OF PISTON COOLING USING SINGLE CIRCULAR OIL JET IMPINGEMENT BALAKRISHNAN RAJU, CFD ANALYSIS ENGINEER, TATA CONSULTANCY SERVICES LTD., BANGALORE ABSTRACT Thermal loading of piston

More information

SWIRL MEASURING EQUIPMENT FOR DIRECT INJECTION DIESEL ENGINE

SWIRL MEASURING EQUIPMENT FOR DIRECT INJECTION DIESEL ENGINE SWIRL MEASURING EQUIPMENT FOR DIRECT INJECTION DIESEL ENGINE G.S.Gosavi 1, R.B.Solankar 2, A.R.Kori 3, R.B.Chavan 4, S.P.Shinde 5 1,2,3,4,5 Mechanical Engineering Department, Shivaji University, (India)

More information

Effect of Compressor Inlet Temperature on Cycle Performance for a Supercritical Carbon Dioxide Brayton Cycle

Effect of Compressor Inlet Temperature on Cycle Performance for a Supercritical Carbon Dioxide Brayton Cycle The 6th International Supercritical CO2 Power Cycles Symposium March 27-29, 2018, Pittsburgh, Pennsylvania Effect of Compressor Inlet Temperature on Cycle Performance for a Supercritical Carbon Dioxide

More information

Corresponding Author, Dept. of Mechanical & Automotive Engineering, Kongju National University, South Korea

Corresponding Author, Dept. of Mechanical & Automotive Engineering, Kongju National University, South Korea International Journal of Mechanical & Mechatronics Engineering IJMME-IJENS Vol:15 No:04 62 A Study on Enhancing the Efficiency of 3-Way Valve in the Fuel Cell Thermal Management System Il Sun Hwang 1 and

More information

Emissions predictions for Diesel engines based on chemistry tabulation

Emissions predictions for Diesel engines based on chemistry tabulation Emissions predictions for Diesel engines based on chemistry tabulation C. Meijer, F.A. Tap AVL Dacolt BV (The Netherlands) M. Tvrdojevic, P. Priesching AVL List GmbH (Austria) 1. Introduction It is generally

More information

Study on Flow Fields in Variable Area Nozzles for Radial Turbines

Study on Flow Fields in Variable Area Nozzles for Radial Turbines Vol. 4 No. 2 August 27 Study on Fields in Variable Area Nozzles for Radial Turbines TAMAKI Hideaki : Doctor of Engineering, P. E. Jp, Manager, Turbo Machinery Department, Product Development Center, Corporate

More information

Retrofit von Industriekesseln zur Brennstoffänderung und NOx- Reduzierung. Dr.-Ing. Marco Derksen

Retrofit von Industriekesseln zur Brennstoffänderung und NOx- Reduzierung. Dr.-Ing. Marco Derksen Retrofit von Industriekesseln zur Brennstoffänderung und NOx- Reduzierung Dr.-Ing. Marco Derksen Contents NOx formation In-furnace NOx reducing measures Application of premixed combustion Experiences in

More information

Chapter 7: Thermal Study of Transmission Gearbox

Chapter 7: Thermal Study of Transmission Gearbox Chapter 7: Thermal Study of Transmission Gearbox 7.1 Introduction The main objective of this chapter is to investigate the performance of automobile transmission gearbox under the influence of load, rotational

More information

Combustion characteristics of n-heptane droplets in a horizontal small quartz tube

Combustion characteristics of n-heptane droplets in a horizontal small quartz tube Combustion characteristics of n-heptane droplets in a horizontal small quartz tube Junwei Li*, Rong Yao, Zuozhen Qiu, Ningfei Wang School of Aerospace Engineering, Beijing Institute of Technology,Beijing

More information

CFD analysis of triple concentric tube heat exchanger

CFD analysis of triple concentric tube heat exchanger Available online at www.ganpatuniversity.ac.in University Journal of Research ISSN (Online) 0000 0000, ISSN (Print) 0000 0000 CFD analysis of triple concentric tube heat exchanger Patel Dharmik A a, V.

More information

Worldwide Pollution Control Association

Worldwide Pollution Control Association Worldwide Pollution Control Association IL Regional Technical Seminar September 13-15,211 Visit our website at www.wpca.info Babcock Power Inc. The Future Of Coal Fired SCRs In A Carbon Capture World 211

More information

Comparison Between Different Arrangements of Bypass Valves in Scroll Compressors

Comparison Between Different Arrangements of Bypass Valves in Scroll Compressors Purdue University Purdue e-pubs International Compressor Engineering Conference School of Mechanical Engineering 2008 Comparison Between Different Arrangements of Bypass Valves in Scroll Compressors Yangguang

More information

6. Acoustical simulation of straight and side inlet/outlet rectangular plenums using the FEM method

6. Acoustical simulation of straight and side inlet/outlet rectangular plenums using the FEM method Research Signpost 37/661 (2), Fort P.O. Trivandrum-695 023 Kerala, India Noise Control: Theory, Application and Optimization in Engineering, 2014: 119-144 ISBN: 978-81-308-0552-8 Editors: Min-Chie Chiu

More information

Abstract In this study the heat transfer characteristics inside a rectangular duct with circular, rectangular, drop

Abstract In this study the heat transfer characteristics inside a rectangular duct with circular, rectangular, drop International Journal of Scientific & Engineering Research, Volume 7, Issue 5, May-2016 25 INVESTIGATION OF HEAT TRANSFER CHARACTERISTICS IN A RECTNAGULAR CHANNEL WITH PERFORATED DROP SHAPED PIN FINS C.

More information

EFFECT OF UNCONSTANT OVERALL HEAT TRANSFER COEFFICIENT ON THERMAL PERFORMANCES OF MULTIPLE ASSEMBLIES OF AUTOMOBILE RADIATORS

EFFECT OF UNCONSTANT OVERALL HEAT TRANSFER COEFFICIENT ON THERMAL PERFORMANCES OF MULTIPLE ASSEMBLIES OF AUTOMOBILE RADIATORS EFFECT OF UNCONSTANT OVERALL HEAT TRANSFER COEFFICIENT ON THERMAL PERFORMANCES OF MULTIPLE ASSEMBLIES OF AUTOMOBILE RADIATORS S. Vithayasai T.Kiatsiriroat Department of Mechanical Engineering, Chiang Mai

More information

EFFECT OF INJECTION ORIENTATION ON EXHAUST EMISSIONS IN A DI DIESEL ENGINE: THROUGH CFD SIMULATION

EFFECT OF INJECTION ORIENTATION ON EXHAUST EMISSIONS IN A DI DIESEL ENGINE: THROUGH CFD SIMULATION EFFECT OF INJECTION ORIENTATION ON EXHAUST EMISSIONS IN A DI DIESEL ENGINE: THROUGH CFD SIMULATION *P. Manoj Kumar 1, V. Pandurangadu 2, V.V. Pratibha Bharathi 3 and V.V. Naga Deepthi 4 1 Department of

More information

AN EXPERIMENT STUDY OF HOMOGENEOUS CHARGE COMPRESSION IGNITION COMBUSTION AND EMISSION IN A GASOLINE ENGINE

AN EXPERIMENT STUDY OF HOMOGENEOUS CHARGE COMPRESSION IGNITION COMBUSTION AND EMISSION IN A GASOLINE ENGINE THERMAL SCIENCE: Year 2014, Vol. 18, No. 1, pp. 295-306 295 AN EXPERIMENT STUDY OF HOMOGENEOUS CHARGE COMPRESSION IGNITION COMBUSTION AND EMISSION IN A GASOLINE ENGINE by Jianyong ZHANG *, Zhongzhao LI,

More information

PDF-based simulations of in-cylinder combustion in a compression-ignition engine

PDF-based simulations of in-cylinder combustion in a compression-ignition engine Paper # 070IC-0192 Topic: Internal Combustion Engines 8 th US National Combustion Meeting Organized by the Western States Section of the Combustion Institute and hosted by the University of Utah May 19-22,

More information

The Effect of Oxygen Concentration on the Burning Characteristics of Kerosene Droplets Using Spark Ignition

The Effect of Oxygen Concentration on the Burning Characteristics of Kerosene Droplets Using Spark Ignition 25 th ICDERS August 2 7, 25 Leeds, UK The Effect of Oxygen Concentration on the Burning Characteristics of Kerosene Droplets Using Spark Ignition Abstract M. S. Wu and S.I. Yang * Department of Power Mechanical

More information

University Turbine Systems Research Industrial Fellowship. Southwest Research Institute

University Turbine Systems Research Industrial Fellowship. Southwest Research Institute Correlating Induced Flashback with Air- Fuel Mixing Profiles for SoLoNOx Biomass Injector Ryan Ehlig University of California, Irvine Mentor: Raj Patel Supervisor: Ram Srinivasan Department Manager: Andy

More information

Experimental Study of Fuel Lean Reburning for NOx Reduction in Oxygen Enhanced Combustion

Experimental Study of Fuel Lean Reburning for NOx Reduction in Oxygen Enhanced Combustion Experimental Study of Fuel Lean Reburning for NOx Reduction in Oxygen Enhanced Combustion CHANG HWAN HWANG*, SEUNG WOOK BAEK + and HAK YOUNG KIM** Aerospace Engineering Korea Advanced Institute of Science

More information

ABSTRACT I. INTRODUCTION III. GEOMETRIC MODELING II. LITERATURE REVIW

ABSTRACT I. INTRODUCTION III. GEOMETRIC MODELING II. LITERATURE REVIW 2017 IJSRSET Volume 3 Issue 5 Print ISSN: 2395-1990 Online ISSN : 2394-4099 Themed Section: Engineering and Technology Performance Analysis of Helical Coil Heat Exchanger Using Numerical Technique Abhishek

More information

Crankcase scavenging.

Crankcase scavenging. Software for engine simulation and optimization www.diesel-rk.bmstu.ru The full cycle thermodynamic engine simulation software DIESEL-RK is designed for simulating and optimizing working processes of two-

More information

Investigation of converging slot-hole geometry for film cooling of gas turbine blades

Investigation of converging slot-hole geometry for film cooling of gas turbine blades Project Report 2010 MVK160 Heat and Mass Transport May 12, 2010, Lund, Sweden Investigation of converging slot-hole geometry for film cooling of gas turbine blades Tobias Pihlstrand Dept. of Energy Sciences,

More information

MHI Integrally Geared Type Compressor for Large Capacity Application and Process Gas Application

MHI Integrally Geared Type Compressor for Large Capacity Application and Process Gas Application MHI Integrally Geared Type for Large Capacity Application and Process Gas Application NAOTO YONEMURA* 1 YUJI FUTAGAMI* 1 SEIICHI IBARAKI* 2 This paper introduces an outline of the structures, features,

More information

Performance Evaluation of Electric Vehicles in Macau

Performance Evaluation of Electric Vehicles in Macau Journal of Asian Electric Vehicles, Volume 12, Number 1, June 2014 Performance Evaluation of Electric Vehicles in Macau Tze Wood Ching 1, Wenlong Li 2, Tao Xu 3, and Shaojia Huang 4 1 Department of Electromechanical

More information

Study of the Effect of CR on the Performance and Emissions of Diesel Engine Using Butanol-diesel Blends

Study of the Effect of CR on the Performance and Emissions of Diesel Engine Using Butanol-diesel Blends International Journal of Current Engineering and Technology E-ISSN 77 416, P-ISSN 47 5161 16 INPRESSCO, All Rights Reserved Available at http://inpressco.com/category/ijcet Research Article Study of the

More information

THE INFLUENCE OF THE EGR RATE ON A HCCI ENGINE MODEL CALCULATED WITH THE SINGLE ZONE HCCI METHOD

THE INFLUENCE OF THE EGR RATE ON A HCCI ENGINE MODEL CALCULATED WITH THE SINGLE ZONE HCCI METHOD CONAT243 THE INFLUENCE OF THE EGR RATE ON A HCCI ENGINE MODEL CALCULATED WITH THE SINGLE ZONE HCCI METHOD KEYWORDS HCCI, EGR, heat release rate Radu Cosgarea *, Corneliu Cofaru, Mihai Aleonte Transilvania

More information

System Simulation for Aftertreatment. LES for Engines

System Simulation for Aftertreatment. LES for Engines System Simulation for Aftertreatment LES for Engines Christopher Rutland Engine Research Center University of Wisconsin-Madison Acknowledgements General Motors Research & Development Caterpillar, Inc.

More information