Consider an air standard Diesel cycle. At the beginning of compression, the temperature is 300 K and the pressure is 101.35 kPa. If the compression ratio is 15 and during the process 1860 kJ/kg of air as added as heat, calculate the following: The maximum cycle pressure a. 3726 kPa b. 1109 kPa The maximum cycle temperature a. 1680 K b. 2740 K The thermal efficiency of the cycle a. 55% b. 50% c. 5890 kPa d. 4495 kPa c. 60% d. 45% c. 3300 K d. 4050 K

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Consider an air standard Diesel cycle. At the beginning of compression, the temperature is 300 K and the pressure is 101.35 kPa. If
the compression ratio is 15 and during the process 1860 kJ/kg of air as added as heat, calculate the following:
The maximum cycle pressure
a. 3726 kPa
b. 1109 kPa
The maximum cycle temperature
a. 1680 K
b. 2740 K
The thermal efficiency of the cycle
a. 55%
b. 50%
.The MEP
a. 2600 kPa
b. 800 kPa
c. 5890 kPa
d. 4495 kPa
c. 60%
d. 45%
c. 3300 K
d. 4050 K
c. 1300 kPa
d. 2900 kPa
Transcribed Image Text:Consider an air standard Diesel cycle. At the beginning of compression, the temperature is 300 K and the pressure is 101.35 kPa. If the compression ratio is 15 and during the process 1860 kJ/kg of air as added as heat, calculate the following: The maximum cycle pressure a. 3726 kPa b. 1109 kPa The maximum cycle temperature a. 1680 K b. 2740 K The thermal efficiency of the cycle a. 55% b. 50% .The MEP a. 2600 kPa b. 800 kPa c. 5890 kPa d. 4495 kPa c. 60% d. 45% c. 3300 K d. 4050 K c. 1300 kPa d. 2900 kPa
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