In an ideal Diesel engine compression is from 14.7 psia, 80F, 1.43 cubic feet to 500 psia. Then 16 BTU/cycle are added as heat. Compute the following: a. T2 in degree Rankine, V, in cubic feet, T3 in degree Rankine, V3 in cubic feet, T4 in degree Rankine and P4 in psia. b. Net work in BTU c. Thermal Efficiency

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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In an ideal Diesel engine compression is from 14.7 psia, 80F, 1.43 cubic feet to 500 psia. Then 16
BTU/cycle are added as heat. Compute the following:
a. T2 in degree Rankine, V, in cubic feet, T3 in degree Rankine, V3 in cubic feet, T, in degree
Rankine and P4 in psia.
b. Net work in BTU
c. Thermal Efficiency
d. Mean Effective Pressure
e. Power in HP for 300 cycles per minute
Transcribed Image Text:In an ideal Diesel engine compression is from 14.7 psia, 80F, 1.43 cubic feet to 500 psia. Then 16 BTU/cycle are added as heat. Compute the following: a. T2 in degree Rankine, V, in cubic feet, T3 in degree Rankine, V3 in cubic feet, T, in degree Rankine and P4 in psia. b. Net work in BTU c. Thermal Efficiency d. Mean Effective Pressure e. Power in HP for 300 cycles per minute
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