Design and Optimization of Contra-Rotating Fans Oliver Velde #, Christian Friebe &, Marius Korfanty #

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1 Design and Optimization of Contra-Rotating Fans Oliver Velde #, Christian Friebe &, Marius Korfanty # # CFturbo GmbH & ILK Institut für Luft- und Kältetechnik ggmbh

2 Motivation to use Contra-rotating fans Very compact compared to a two stage fan with guiding vanes Smaller impeller diameter and/or lower speed compared to single stage fans Alternative for low pressure radial ventilators Potential for better acoustic behavior 20 Nov /20

3 Contra-rotating fan principle First impeller generates a negative pre-swirl for the second impeller I w 2 I II c 2 I u I c 1 II w 1 II u II w 1 I u I c I I 1 = c m1 w 2 II c 2 II u II I Y Euler = c u u Y I = c u2 u I II, Y II = c u2 I Y I + Y II = c u2 u I + u II 20 Nov /20 u II

4 Gear less single motor driven Contra-rotating fan Torque/Power distribution imposed by aerodynamic design of impellers Impeller mounted on rotor Impeller mounted on axis 20 Nov /20

5 Contra-rotating fan design Design point: pressure difference Δp tot, flow Q, Fluid properties Power distribution between 2 impellers defined by either of Pressure difference and speed: Δp tot,i, n I und Δp tot,ii, n II Torque and speed: T I, n I und T II, n II (with T n = Δp tot Q) Example: fan impeller I impeller II Q [m 3 /h] Initial design: Δp tot [Pa] n [rpm] Design Point Initial design Number of blades [-] 8 6 Profile NACA 6508 NACA 6508 Stagger angle λ [ ] Chord length l [mm] Nov /20

6 Contra-rotating fan design with CFturbo 20 Nov /20

7 Computational model Rotor-Stator Interface Mixing Plane Outlet BC: mass flow Periodic Interfaces Evaluation planes EP1 EP3 Rotor-Stator Interface Mixing Plane Rotor-Rotor Interface Mixing Plane EP1 EP2 EP3 Inlet BC: p = 1 [bar], T = Nov /20

8 Mesh Hexahedral Mesh 2 Mio. elements ANSYS TurboGrid 20 Nov /20

9 Boundary conditions & solver settings INLET Pressure: 1 [bar] OUTLET Volumetric flow: [m 3 /h] Rotational speed: 8000 rpm for impeller I rpm for impeller II Fluid properties: Air (Perfect Gas) ANSYS-CFX v18.0 Steady State Simulation Heat Transport (Total Energy) Mixing-Plane Interface SST-Turbulence model High Resolution differencing scheme 20 Nov /20

10 Δp tot [Pa] Simulation of initial design, results fan 400 impeller I 200 impeller II Volumetric flow [m 3 /h] 20 Nov /20

11 η [%] Simulation of initial design, results 100% 95% 90% impeller I 85% fan 80% 75% 70% impeller II 65% 60% Optimization goal: Improving of impeller II efficiency 55% Volumetric flow [m 3 /h] 20 Nov /20

12 Optimization of initial design Optimization process: Control unit for complete process Parametric CAD model Meshing, simulation, analysis 20 Nov /20

13 Optimization of initial design Objective: Restriction: improve second impeller with respect to efficiency match design point Parameters: only impeller II i β B1 β 1 w 1 l / t Solidity ϕ w 2 γ = α + β stagger angle β 2 β B2 δ t = π d/z Pitch Parameters range Number of blades z [-] Stagger angle λ hub [ ] Stagger angle λ tip [ ] Chord length l hub [mm] 32 (const.) Chord length l tip [mm] Leading edge position Δz hub [mm] parameters for Optimization u 1 u 2 Δz hub 20 Nov /20

14 Optimization process Heeds CFturbo: Parametric CAD model ANSYS TurboGrid: Mesh generation ANSYS CFX: Simulation & Postprocessing 144 Designs 70min/Design / 8 Processors 20 Nov /20

15 Optimization results impeller II Initial design impeller II Total pressure difference Δp tot [Pa] Efficiency η [%] Initial design impeller II Number of blades z [-] 6 7 Stagger angle λ hub [ ] Stagger angle λ tip [ ] Chord length l hub [mm] Chord length l tip [mm] Leading edge position Δz hub [mm] Optimized design impeller II Optimized design impeller II 20 Nov /20

16 Δp tot [Pa] Performance curve Initial design Optimized fan impeller I impeller II Volumetric flow [m 3 /h] 20 Nov /20

17 η [%] Efficiency 95% 90% impeller I 85% fan 80% 75% 70% impeller II 65% Initial design 60% Optimized 55% Volumetric flow [m 3 /h] 20 Nov /20

18 Pressure distribution mid span Initial design Optimized 20 Nov /20

19 Relative velocity distribution mid span Initial design Optimized 20 Nov /20

20 Summary Automated process for design and optimization for Contra-rotating fans Reasonable initial design for both impellers using CFturbo software Optimization of second impeller only Simple method: passage only, steady state simulation Computational resources Validation in progress Transient flow simulations/360 More detailed geometry modeling Experiments Acoustic investigations planned Initial design impeller II Optimized impeller II 20 Nov /20

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