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Armstrong Siddeley Puma

liquid-cooled 6 -cylinder inline engine 230 [hp](169.2 KW)

Afbeeldingsresultaat voor armstrong siddeley puma

introduction : november 1917 country : United Kingdom

applications : De Havilland DH9

normal rating : 230 [hp](169.2 KW) at 1400 [rpm] at 0 [m] above sea level

no reduction, direct drive

weight engine(s) dry : 308.0 [kg] = 1.82 [kg/KW]

bore : 145.0 [mm] stroke : 190.0 [mm

compression ratio: 4.95 :1

published volume (displacement): 18.800 [litre]

calculated stroke volume (Vs) : 18.825 [litre]

compression volume (Vc): 4.766 [litre]

total volume (Vt): 23.591 [litre]

power / stroke volume ( Nl): 9.0 [kW/litre]

torque : 1154 [Nm]

engine weight/volume : 16.4 : [kg/litre]

average piston speed (Cm): 8.9 [m/s]

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intake pressure at 0 [m] hoogte Pi : 0.95 [kg/cm2]

mean engine pressure (M.E.P.) at 0 [m] hoogte Pm : 5.94 [kg/cm2]

compression pressure at 0 [m] hoogte Pc: 7.40 [kg/cm2]

estimated combustion pressure at 0 [m] Pe : 29.59 [kg/cm^2 ]

exhaust pressure at 0 [m] Pu : 3.80 [kg/cm^2 ]

Afbeeldingsresultaat voor armstrong siddeley puma

According to this advertisement rating is 230 hp at 1500 rpm !

compression-end temperature at 0 [m] Tc: 584 [°K] (311 [°C])

caloric combustion temperature at 0 [m] Tec: 2216 [°K] (1942 [°C])

polytrope combustion temperature at 0 [m] Te (T4): 2331 [°K] (2058 [°C])

exhaust temperature at 0 [m] Tu: 1314 [°K] (1041 [°C])

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Thermal efficiency Nth : 0.33 [ ]

Mechanical efficiency Nm : 0.82 [ ]

Thermo-dynamic efficiency Ntd : 0.27 [ ]

design hours : 776 time between overhaul : 61

fuel consumption optimum mixture at1400.00 [rpm] at 0 [m] : 61.70 [kg/hr]

specific fuel consumption thermo-dynamic : 234 [gram/epk] = 318 [gram/kwh]

estimated specific fuel consumption (cruise power) at 0 [m] optimum mixture : 332

[gram/kwh]

specific fuel consumption at 0 [m] at 1400 [rpm] optimum mixture : 364.76

[gram/kwh]

estimated specific oil consumption (cruise power) : 20 [gram/kwh]

literature : wikepedia

Jane’s fighting aircraft WWI

DISCLAIMER above calculations are based on published data, they must be regarded as indication not as facts

Calculated performance and weight may not correspond with actual weights and performances and are assumptions for which no responsibility can be taken

Calculations are as accurate as possible, they can be fine-tuned when more data is available, you are welcome to give suggestions and additional information

so we can improve our program

For copyright on drawings/photograps/content please mail to below mail address

(c) B van der Zalm 30 november 2018 contact : bvanderzalm@ziggo.nl python 3.4.1