Required information A Diesel cycle has a compression ratio of 22 and begins its compression at 87 kPa and 15°C. The maximum cycle temperature is 1200°C. Utilize air-standard assumptions. The properties of air at room temperature are R = 0.287 kPa-m³/kg-K, cp=1.005 kJ/kg-K, cy=0.718 kJ/kg-K, and k=1.4. Determine the thermal efficiency of this cycle using variable specific heats at room temperature. Use data from the tables. The thermal efficiency of this cycle is

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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Cycle effeciency isn't 68% and use variable spec heat formulas

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A Diesel cycle has a compression ratio of 22 and begins its compression at 87 kPa and 15°C. The maximum cycle
temperature is 1200°C. Utilize air-standard assumptions. The properties of air at room temperature are R = 0.287
3
kPa·m³/kg-K, cp= 1.005 kJ/kg⋅K, cv= 0.718 kJ/kg-K, and k=1.4.
Determine the thermal efficiency of this cycle using variable specific heats at room temperature. Use data from the tables.
The thermal efficiency of this cycle is
Transcribed Image Text:2 es ! Required information A Diesel cycle has a compression ratio of 22 and begins its compression at 87 kPa and 15°C. The maximum cycle temperature is 1200°C. Utilize air-standard assumptions. The properties of air at room temperature are R = 0.287 3 kPa·m³/kg-K, cp= 1.005 kJ/kg⋅K, cv= 0.718 kJ/kg-K, and k=1.4. Determine the thermal efficiency of this cycle using variable specific heats at room temperature. Use data from the tables. The thermal efficiency of this cycle is
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