k to the menu Sem2 Wks9-11: Dual cycle The figure below is the basic plot of pressure vs. volume for the Dual Standard Cycle. Constant pressure heat addition 4 3 pv' = constant Heat IN Pressure (P) Adiabatic expansion 2 5 Heat OUT (Constant volume heat rejection) Constant volume heat addition Adiabatic compression Volume (V)
Volume (V) Using the Dual Air Standard Cycle and the following data: • Assume constant properties of air. R=287 J/kgK; Cp = 1005 J/kg : Cv = 718 J/kgK; 1 = 1.4 • Cycle compression ratio = 15 (1/2) • Air conditions prior to compression: Pressure = 1.6 bar; Temperature = 290K • Heat added at constant volume = 280000 J/kg • Heat added at constant pressure = 786000 J/kg a) Calculate the pressure at the end of the compression process. P- bar
b) Calculate the temperature at the end of the compression process Submit part 2 marks Unanswered c) Calculate the temperature at the end of the constant volume heat addition process T = Submit part 2 marks Unanswered d) Calculate the maximum cycle pressure. P. bar
e) Calculate the maximum cycle temperature Таным Submit part 2 marks Unanswered 1) Calulate the temperature at points. K Submit part 4 marks Unanswered
Unanswered Calculate the pressure at points. P- bar Submit part 2 marks Unanswered h) Calculate the cycle efficiency as a percentage 7= Submit part 4 marks Unanswered
k to the menu Sem2 Wks9-11: Dual cycle The figure below is the basic plot of pressure vs. volume for the Dual Standard C
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k to the menu Sem2 Wks9-11: Dual cycle The figure below is the basic plot of pressure vs. volume for the Dual Standard C
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