kursval7z
2021-11-25
tnie54
Beginner2021-11-26Added 18 answers
We have an ideal Otto cycle with a compression ratio of:
Air is injected in to the engine at the next pressure and temperature:
The power of the cycle is:
We are to determine the coefficient of efficiency and the rate of heat intake.
The specific heat ratio for air we get from table A-2 and it’s value is:
The coefficient of thermal efficiency for an Otto cycle with constant specific heats is:
The rate of heat input is:
Daniel Williams
Beginner2021-11-27Added 14 answers
Step 1
Otto cycles have following process:
1-2 -isentropic compression process
2-3-constnat volume heat addition
3-4-isentropic expansion process
4-1 constant volume heat rejection.
Write the pressure and volume relation for isentropic process:
Use the ideal gas equation in Equation (1).
Step 2
Use the equation (1) and (2).
Substitute the known values in the above Equation.
Step 3
Write the expression for the thermal efficiency:
Thus, the thermal efficiency of the cycle is 0.61.
Step 4
Calculate the heat added using the thermal efficiency:
Thus, the heat added to the cycle is 147.54 kW.
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