Calculation of external available Pressure. 1. Criterion flow velocity (Ref. 20 C) Do not design units in conditions acc. to white areas!

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1 Page 1 Standard Series Size: 3 Air flow volume Calculation of external available Pressure [m³/h] Criterion flow velocity (Ref. 2 C) Do not design units in conditions acc. to white areas! Supply Unit with air conditioning elements: 1. Step Flow velocity related to Cross section of filter (long) Flow velocity related to Finned surface of heater Flow velocity related to Finned surface of cooler [m/s],53 1,6 1,42 1,77 1,95 2,13 2,3 2,48 2,66 2,83 3,19 3,54 [m/s],66 1,32 1,76 2,2 2,43 2,65 2,87 3,9 3,53 3,97 4,41 [m/s],68 1,37 1,82 2,28 2,5 2,73 2,96 3,19 3,64 Extract Unit without air conditioning elements: Flow velocity related to Inner cross section of unit [m/s],49,99 1,32 1,65 1,81 1,98 2,14 2,31 2,47 2,64 2,97 3,3 3,63 3,96 Calculation of external available statical air pressure by deduction of internal pressure losses Deduct the respective pressure losses of needed elements from available stat. pressure of fan! Available statical pressure [Pa] at rated voltage 2. Pressure Calculation without consideration of pressure regain! VN VN Ventilator Unit VN VN The following air conditioning elements reduce pressure available! Pressure loss [Pa] at above statet air volume Pocket filter F5 Calculated resistance Short filter (195 mm pocket) Clean resistance Recommended final resistance: 2-3 Pa To ensure long filter life time please dimension the unit with consideration of Calculated resistance Pocket filter F5 Calculated resistance Long filter (6 mm pocket) Clean resistance Recommended final resistance: 2-3 Pa Pocket filter F7 Calculated resistance Long filter (6 mm pocket) Clean resistance Recommended final resistance: 2-3 Pa Pocket filter F9 Calculated resistance Long filter (6 mm pocket) Clean resistance Recommended final resistance: 3-4 Pa Air Heater LW LW Medium: PWW (pump circulated hot water) LW Step Subtotal External statical pressure [Pa] available LW

2 Page 2 Standard Series Size: 3 Air Flow Volume Calculation of external available Pressure [m³/h] Pressure calculation The following air conditioning elements reduce pressure available! Subtotal of page before of external available statical pressure [Pa] Pressure loss [Pa] at above stated air volume Air Cooler LK and LKV LK Medium. chilled water KKW LK LK Air Cooler LKR LKR Direct Evaporator LKR Medium R47C, 5 C LKR Water Eliminator Calculation of external available statical air pressure by deduction of internal pressure losses Deduct the respective pressure losses of needed elements from available stat. pressure of fan! horizontal air flow (LK) Damper class type A class type B Pressure losses to be taken into consideration only with damper on inlet side. Air Mixer LJ, LM, CLM class type A class type B Pressure losses to be taken into consideration only with air mixer on inlet side. Unit length Attennuator SD 85 mm mm mm mm Plate heat Exchange APD with integrated Bypass resistance calculated at 22 C/3% r. H. on request Coarse Filter GF clean resistance Regularly cleaning required! Activated Carbon Filter Calculated resistance same than clean resistance 2. Step Electric Air Heater LE LE Operating voltage 4V/5Hz LE LE Total External statical pressure [Pa] available 44

3 Ventilator Unit VN 38 Power Supply: 4V/3N~ 5Hz with Size 3 Pressure / Air Volume Performance, Selection of Speed Controllers FISCHBACH COMPACT FAN D97/D2 Discharge Inlet Static Pressure Regain [Pa] Static Pressure [Pa] V 4 V 28 V 23 V 18 V Air Volumenstrom flow volume [m³/h] B The data for external static pressure take into account all pressure losses due to integration of the fan within unit. Performance based upon free inlet and discharge. Max. power consumption 3,7 kw Max. current consumption 7,3 A I A / I N : 1,7 Static Pressure Regain B can be read from the performance curve. It is available when the unit is fitted with a straight discharge duct, sized according too the standard connection size B. Minimum duct length neccessary: 2,4 m Voltage [V] At free air [m³/h] and [A] External static pressure pst [Pa] available for AHU and system pressure losses line: Air Flow Volume V L [m³/h] bei ρ = 1,2 kg/m³ 2. line: Current consumption [Pa] ,16 2, ,55 4,17 3, ,41 5,5 4,69 4,32 3, ,12 5,77 5,4 5,1 4,6 4,17 3, ,29 6,95 6,6 6,21 5,8 5,34 4,84 4,3 Save power and even more silent with FISCHBACH SPEED CONTROLLERS Voltage Control Type Order-No. Average Discharge-Air-Velocity v [m/s] related to standard connection size B Stepless - 1% and 1% - * FDR 12/ Stepwise, 5 Steps * FDR 8./ Max. permissable Air Inlet Temperature: 6 C FISCHBACH-AUTOMATIC-CONTROL * FRA 12/ Frequency Inverter * FFU * with integrated motor protection and outlet fuses 45

4 Ventilator Unit VN 39 Power Supply: 4V/3N~ 5Hz with Size 3 Pressure / Air Volume Performance, Selection of Speed Controllers FISCHBACH COMPACT FAN DS9-7/D2.5 Discharge Inlet Static Pressure Regain [Pa] Static Pressure [Pa] V 4 V 28 V 23 V 18 V Volumenstrom Air flow volume [m³/h] Average Discharge-Air-Velocity v [m/s] related to standard connection size B 4 B The data for external static pressure take into account all pressure losses due to integration of the fan within unit. Performance based upon free inlet and discharge. Max. power consumption 5,35 kw, Max. current consumption 1,9 A. I A / I N : 1,9 Static Pressure Regain B can be read from the performance curve. It is available when the unit is fitted with a straight discharge duct, sized according too the standard connection size B. Minimum duct length neccessary: 2,4 m Voltage [V] At free air [m³/h] and [A] External static pressure pst [Pa] available for AHU and system pressure losses line: Air Flow Volume V L [m³/h] bei ρ = 1,2 kg/m³ 2. line: Current consumption [Pa] ,66 4, ,62 6,28 5, ,92 7,56 7,19 6,48 6, ,95 8,59 8,22 7,45 7,7 6,68 5, ,9 1,55 1,23 9,46 9,7 8,66 7,8 7,36 Save power and even more silent with FISCHBACH SPEED CONTROLLERS Voltage Control Type Order-No. Stepless - 1% and 1% - * FDR 12/ Stepwise, 5 Steps * FDR 11.3/ Max. permissable Air Inlet Temperature: At free air (1) up to system curve (2): 3 C Above system curve (2) to (3): 4 C Above system curve (3) to (4): 5 C Above system curve (4) : 6 C 46 FISCHBACH-AUTOMATIC-CONTROL * FRA 12/ Frequency Inverter * FFU * with integrated motor protection and outlet fuses

5 Ventilator Unit VN 31 Power Supply: 4V/3N~ 5Hz with Size 3 Pressure / Air Volume Performance, Selection of Speed Controllers FISCHBACH COMPACT FAN DS9-7/D5 Discharge Inlet Static Pressure Regain [Pa] Static Pressure [Pa] V 4 V Volumenstrom Air flow volume [m³/h] Average Discharge-Air-Velocity v [m/s] related to standard connection size B 3 28 V 23 V 18 V Max. permissable Air Inlet Temperature: Below system curve (1): Do not operate in this area! Above system curve (1) to (2): 3 C Above system curve (2) to (3): 4 C Above system curve (3) : 6 C 2 B 1 47 The data for external static pressure take into account all pressure losses due to integration of the fan within unit. Performance based upon free inlet and discharge. Max. power consumption 8,4 kw, Max. current consumption 17,5 A. I A / I N : 2,8 Static Pressure Regain B can be read from the performance curve. It is available when the unit is fitted with a straight discharge duct, sized according too the standard connection size B. Minimum duct length neccessary: 2,9 m Voltage [V] At free air [m³/h] and [A] External static pressure pst [Pa] available for AHU and system pressure losses line: Air Flow Volume V L [m³/h] bei ρ = 1,2 kg/m³ 2. line: Current consumption [Pa] ,38 1,53 1, ,7 14,66 13,97 13,17 12, ,56,79, 14,13 13, ,,9,5 14,6 13,7 11, ,2,64,6 14,44 13,8 11,46 Save power and even more silent with FISCHBACH SPEED CONTROLLERS Voltage Control Type Order-No. Stepless - 1% and 1% - * FDR 2/ Stepwise, 5 Steps * FDR 2/ FISCHBACH-AUTOMATIC-CONTROL * FRA 2/ Frequency Inverter * FFU * with integrated motor protection and outlet fuses

6 Ventilator Unit VN 311 Power Supply: 4V/3N~ 5Hz with Size 3 Pressure / Air Volume Performance, Selection of Speed Controllers FISCHBACH COMPACT FAN DS9-1/D5 Discharge Inlet Static Pressure Regain [Pa] Static Pressure [Pa] V 18 V 23 V 28 V Volumenstrom Air flow volume [m³/h] Average Discharge-Air-Velocity v [m/s] related to standard connection size B V Max. permissable Air Inlet Temperature: Below system curve (1): Do not operate in this area! Above system curve (1) to (2): 3 C Above system curve (2) to (3): 4 C Above system curve (3) : 6 C B 48 The data for external static pressure take into account all pressure losses due to integration of the fan within unit. Performance based upon free inlet and discharge. Max. power consumption 9, kw, Max. current consumption 17,8 A. I A / I N : 2,8 Static Pressure Regain B can be read from the performance curve. It is available when the unit is fitted with a straight discharge duct, sized according too the standard connection size B. Minimum duct length neccessary: 2,9 m Voltage [V] At free air [m³/h] and [A] External static pressure pst [Pa] available for AHU and system pressure losses line: Air Flow Volume V L [m³/h] bei ρ = 1,2 kg/m³ 2. line: Current consumption [Pa] ,98 1, ,65,25 13,7 12,5 11, ,65,73 13,72 12,69 11,67 1, ,81 16,77,46 13,92 12, ,98 16, 14,91 13,82 12,65 Save power and even more silent with FISCHBACH SPEED CONTROLLERS Voltage Control Type Order-No. Stepless - 1% and 1% - * FDR 2/ Stepwise, 5 Steps * FDR 2/ FISCHBACH-AUTOMATIC-CONTROL * FRA 2/ Frequency Inverter * FFU * with integrated motor protection and outlet fuses

7 Size: 3, Module depth 1 mm The unit sides marked by arrow are open! Air Heater Unit LW for medium pump circulated water PWW 35 1 pressure loss [Pa] 1 5 air pressure loss LW3 LW2 LW pressure loss [kpa] water pressure loss LW1 LW2 LW water quantity [m³/h] The formula for calculation of heating performance [kw] of air heater is dependant on air flow volume and the air temperature difference (between air on-coil and air off-coil, to be taken out of following diagrams) is as follows: Q h [kw] = V L /36 x (t LA - t LE ) x ρ L x cp L Q h = heating performance [kw] V L = t LA = air temperature off-coil [ C] t LE = air temperature on-coil [ C] ρ L = specific weight of air = 1,2 [kg/m³] cp = specific heat capacity of air = 1, kj/kg K 49

8 Size: 3 Air Heater Unit LW for medium pump circulated water Heating performance for water temperature on-/off-coil 55/45 C 2 LW1 air temperature off-coil [ C] air temperature off-coil [ C] air temperature off-coil [ C] C LW2 LW C - 1 C C - 1 C - C C - 1 C - C air temperature on-coil [ C] air temperature on-coil [ C] air temperature on-coil [ C] 5

9 Size: 3 Air Heater Unit LW for medium pump circulated water Heating performance for water temperature on-/off-coil 7/5 C 2 LW1 air temperature off-coil [ C] air temperature off-coil [ C] air temperature off-coil [ C] C LW2 LW3-1 C - 1 C - C C 34-1 C 32 - C C C air temperature on-coil [ C] air temperature on-coil [ C] air temperature on-coil [ C] 51

10 Size: 3 Air Heater Unit LW for medium pump circulated water Heating performance for water temperature on-/off-coil 8/6 C air temperature off-coil [ C] air temperature off-coil [ C] air temperature off-coil [ C] LW1 LW2 LW3-1 C - C - 1 C - C 45 C 4-1 C - C C C air temperature on-coil [ C] air temperature on-coil [ C] air temperature on-coil [ C] 52

11 Size: 3, Module depth 1 mm The unit sides marked by arrow are open! Air Cooler Units LK and LKV for cooling medium chilled water KKW Water temperature on-/off-coil 6/1 or 6/12, without glycol LK LKV The required amount of water can be calculated with the formula: V W [m³/h] = (Q h x 36)/( t W x c W x ρ W ) air temperature off-coil ( C) air temperature off-coil ( C) pressure loss (kpa) pressure loss (Pa) Q h = cooling performance [KW] V W = quantity of water [m³/h] t W = water temperature difference [Kelvin] (4K at 6/1 C or 6K at 6/12 C) ρ W = specific weight of water = 1 [kg/m³] c W = specific heat capacity of water = 4,19 kj/kg K air pressure loss LK water pressure loss LK 2 LK water quantity [m³/h] chilled water 6/1 C air on-coil: 32 C,4%, r.f chilled water 6/12 C air on-coil: 32 C, 4%, r.f LK 4 LK 2 LK 6 LK 2 LK 4 LK 6 LK 2 LK 4 LK 6

12 Size: 3, Module depth 1 mm The unit sides marked by arrow are open! Air Mixer Unit LJ and LM for AHU with supply and extract air arranged on top of each other pressure loss of each air-flow No. 2 outside air with damper size B No. 1 outside air with damper size A LJ LM pressure loss [Pa] Damper size A: 912x912 mm (inner size) Damper size B: 912x662 mm (inner size) Air Mixer Unit CLM for AHU with supply and extract air arranged in row pressure loss of each air-flow outside air with damper size B 16 6 supply air fresh air exhaust air 4 2 extract air pressure loss [Pa] Note for units type LJ, LM and CLM: Pressure loss of Air Mixing Units is calculated on base free air. That means, for connected duct of same cross section no additional dynamical intake losses have to be considered. In case of pressure side connection with a ventilator unit the resulting pressure regain is bigger than the pressure loss. Therefore, no statical pressure loss needs to be considered. 54

13 1 Standard Series Size: 3, Module depth 1 mm Combinated Activated Carbon Filter Unit AKCF for elimination of dust and undesireable odours 1 pressure loss [Pa] equipped with: 1. Activated carbon filter with 3 filter cartridges (bayonet fixing), 2. Pocket filter, quality class F7 (EU7), length 6mm Total air resistance of combinated filter unit is a sum of pressure drops of the filter steps 1 and 2. Therefore, the pressure loss of filter EU7 has to be added separately 14 to below values for activated carbon filter (to be found in diagram for the respective filter module) air resistance of activated carbon filter only 12 operative range The unit sides marked by arrow are open! Coarse Filter Unit GF 35 equipped with: 3 Filter steps: 2 Metal mat work filter and 1 Fibre mat filter with an exchange frame (regularly cleaning required) pressure loss [Pa] air resistance of filter unit Dampers and Flexible Connections Damper type A : for total cross section of unit 912 mm width (B) x 912 mm height (H) Damper type B (912 mm width (B) x 662 mm height (H) for fan unit s discharge opening (smaller); fitting for flexible connection B Flexible Connection: to be used for outlet- and inlet side type A : 912 mm width (B) x 912 mm height (H) for total cross section of unit. type B : 912 mm width (B) x 662 mm height (H) for mounting on fan unit s discharge and on air mixer units with damper size B 55

14 Size: 3, Module depth 1 mm The unit sides marked by arrow are open! Electric Air Heater Unit LE for 4V/5Hz operating voltage pressure loss [Pa] air pressure loss 1. type LE type LE 5 3. type LE 75 Heating performance, pressure loss and air temperature on-/off-coil Type LE25 (kw), 19 elements, current max. 35,7 A, 4 switching levels Type LE5 (kw), 38 elements, current max. 71,4 A, 4 switching levels Type LE75 (kw), 57 elements, current max. 74,6 A, 4 switching levels air temperature off-coil [ C] air temperature off-coil [ C] air temperature off-coil [ C] Electric Heater type LE Electric Heater type LE 5 Electric Heater type LE C + 5 C C - 5 C - 1 C - C - 18 C + 1 C + 5 C C - 5 C - 1 C - C - 18 C + 1 C + 5 C C - 5 C - 1 C - C - 18 C air temperature on-coil [ C] air temperature on-coil [ C] air temperature on-coil [ C]

15 Size: 3, Module depth 1 mm The unit sides marked by arrow are open! Air Filter Unit KFS with short pocket (195mm) and long pocket filters (6mm) Technical data and resistance: Air Filter Unit with: short pocket long pocket pressure loss [Pa] air resistance of filters filter class F5 (EU5) 195 lg pressure loss [Pa] air resistance of filters filter class F5 - F9 (EU5-EU9) F9 6 lg F7 6 lg F5 6 lg

16 Size: 3 Sound data for Ventilator Unit VN 38 - VN 31 VN 38 Fan: D 97/D 2 *sound pressure level L p in db (A) voltage [V] inlet discharge * related to room absorption of 8 db (25m² Sabine), at free air! measured in distance of 3 m voltage [Volt] inlet side: sound power level in Lw [db] at mid frequency in (Hz) (at free air!) L WA [db(a)] total discharge side: sound power level in Lw [db] at mid frequency in (Hz) (at free air!) voltage [Volt] L WA [db(a)] total VN 39 Fan: DS 9-7/D 2.5 *sound pressure level L p in db (A) voltage [V] inlet discharge * related to room absorption of 8 db (25m² Sabine), at free air! measured in distance of 3 m voltage [Volt] inlet side: sound power level in Lw [db] at mid frequency in (Hz) (at free air!) L WA [db(a)] total discharge side: sound power level in Lw [db] at mid frequency in (Hz) (at free air!) voltage [Volt] L WA [db(a)] total VN 31 Fan: DS 9-7/D 5 *sound pressure level L p in db (A) voltage [V] inlet discharge * related to room absorption of 8 db (25m² Sabine), at free air! measured in distance of 3 m voltage [Volt] inlet side: sound power level in Lw [db] at mid frequency in (Hz) (at free air!) L WA [db(a)] total discharge side: sound power level in Lw [db] at mid frequency in (Hz) (at free air!) voltage [Volt] L WA [db(a)] total

17 Size: 3 Sound data for Ventilator Unit VN 311 VN 311 Fan: DS 9-1/D 5 *sound pressure level L p in db (A) voltage [V] inlet discharge * related to room absorption of 8 db (25m² Sabine), at free air! measured in distance of 3 m voltage [Volt] inlet side: sound power level in Lw [db] at mid frequency in (Hz) (at free air!) L WA [db(a)] total discharge side: sound power level in Lw [db] at mid frequency in (Hz) (at free air!) voltage [Volt] L WA [db(a)] total

Calculation of external available Pressure. [m/s] 0,41 0,62 0,82 1,03 1,23 1,44 1,64 1,85 2,05 2,47 2,88 3,29 3,7

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