In Otto cycle process, the initial temperature and pressure at compression stroke are 273K and90kPa and the compression ratio is 5. The heat transferred per cycle is 400 kJ/kg of air calculate the work done by kg of air and the thermal efficiency. Data given: C, = 1.005 kJ/kg - Kand C,=0.718KJ/kg - K. a) 189.8kJ/kg and 0.658 b) 189.8kJ/kg and 0.495 c) 150.88KJ/kg and 0.658 d) 200.8kJ/kg and 0.495

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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In Otto cycle process, the initial temperature and pressure at compression stroke are
273 K and90kPa and the compression ratio is 5. The heat transferred per cycle is
400 kJ/kg of air calculate the work done by kg of air and the thermal efficiency.
Data given: C, = 1.005 kJ/kg - Kand C,=0.718KJ/kg - K.
a) 189.8kJ/kg and 0.658
b) 189.8kJ/kg and 0.495
c) 150.88 kJ/kg and 0.658
d) 200.8kJ/kg and 0.495
Transcribed Image Text:In Otto cycle process, the initial temperature and pressure at compression stroke are 273 K and90kPa and the compression ratio is 5. The heat transferred per cycle is 400 kJ/kg of air calculate the work done by kg of air and the thermal efficiency. Data given: C, = 1.005 kJ/kg - Kand C,=0.718KJ/kg - K. a) 189.8kJ/kg and 0.658 b) 189.8kJ/kg and 0.495 c) 150.88 kJ/kg and 0.658 d) 200.8kJ/kg and 0.495
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