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5.1. Maximum Pressure Limit As discussed in section 4.2, pressure limits have profound influence on the thermal efficiency and the net work produced. I expect a higher maximum pressure limit and a lower minimum pressure limit can increase both the thermal efficiency and the work produced. The first sensitivity study focuses on the maximum pressure limit. The maximum pressure in the cycle, which is the turbine inlet pressure, is now limited by 2800 kPa. Only Figure 5 and Figure 6 are reproduced accordingly, because thermal efficiency and work produced are the major concerns in this project. The resulting plots are Figure 11 and Figure 12. Figure 11. First law efficiency assuming maximum pressure limit is 2800 kPa. Figure 12. Work produced assuming the maximum pressure limit is 2800 kPa. 0.2 0.18 0.16 0.14 0.12 0.1 0.08 0.06 0.04 0.02 0 R-123 (Original) Water (Original) Benzene (Original) Ethanol (Original) R-123 Ethanol Benzene Water R-245fa R-236ea R-245ca 50 100 150 200 250 300 350 400 Exhaust Gas Temperature (°C) 35000 30000 25000 20000 15000 10000 5000 0 Water (Original) R-123 (Original) Water R-245fa R-123 Benzene Ethanol R-236ea R-245ca 50 100 150 200 250 300 350 400 Exhaust Gas Temperature (°C) 20 Work per Unit Exhaust Mass Flow Rate (W/kg) First Law Efficiency ( )PDF Image | Working Fluid Selections in Organic Rankine Cycle ICE
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