Working Fluid Selections in Organic Rankine Cycle ICE

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Working Fluid Selections in Organic Rankine Cycle ICE ( working-fluid-selections-organic-rankine-cycle-ice )

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MaxPresArray(LoopCounterTInTurb)=MaxPres; MinPresArray(LoopCounterTInTurb)=MinPres; end PlotExGasTemp=MinTempExGasInEvap-273.15:TempInTurbIncre:MaxTempExGasInEvap- 273.15;%%%%%%%%%% figure plot(PlotExGasTemp,FirstLawEffArray,'.') hold on xlabel('Exhaust Gas Temperature (C)') ylabel('First Law Efficiency') title('ORC Efficiency for Different Working Fluids') figure plot(PlotExGasTemp,MaxPresArray,'.') hold on xlabel('Exhaust Gas Temperature (C)') ylabel('Max Pressure in System (kPa)') figure plot(PlotExGasTemp,MinPresArray,'.') hold on xlabel('Exhaust Gas Temperature (C)') ylabel('Min Pressure in System (kPa)') Code 2: clear clc WorkingFluidArray=['water ';'toluene';'R245fa ';'R123 ';'benzene';'pxylene';'ethanol';'R236ea ';'R245ca ']; DefaultSetting=input('Default Settings (y or n): ','s'); if DefaultSetting=='n' IsenEffTurb=input('Input the isentropic efficiency of the turbine: '); IsenEffPump=input('Input the isentropic efficiency of the pump: '); TempDiffEvap=input('Input the inlet temperature difference (C) in the evaporator: '); TempDiffEvapPinch=input('Input the temperature difference (C) at the pinch point in the evaporator: '); TempDiffCondAirIn=input('Input the outlet temperature difference (C) in the condenser: '); TempAirInCond=input('Input the temperature (C) of the air used for cooling in the condenser: '); TempExGasInEvap=input('Input the inlet temperature (C) of the exhaust gas in the evaporator: '); PresExGasEvap=input('Input the pressure (kPa) of the exhaust gas in the evaporator: '); MFlowExGas=input('Input the mass flow rate (kg/s) of the exhaust gas: '); TempInTurbIncre=input('Input the increment of the inlet temperature of the turbine: '); MaxTempExGasInEvap=input('Input the maximum temperature (C) of exhaust gas: '); MinTempExGasInEvap=input('Input the minimum temperature (C) of exhaust gas: '); TempExGasInEvapIncre=input('Input the temperature increment of exhaust gas: '); PresInTurbIncre=input('Input the increment of the inlet pressure of the turbine (optimization resolution): ');%%%%%%%%%% 43

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