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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Figure 4. Different pressures (P5, P5’, P5”, etc.) can be chosen as the turbine inlet pressure. The model picks the pressure that optimizes the cycle performance. In addition, T9 (Figure 3 and 4) is the exhaust gas temperature, which can vary according to the engine types and operating conditions. Thus, to capture this variation, the model will plot the cycle characteristics at the optimized state against exhaust gas temperature from 80 °C to 380 °C. Note that all the limitations stated before will be imposed on the model. The MATLAB code of the model is included in Appendix. 4. SIMULATION RESULTS The model was run for the nine working fluids listed in section 2.2.4. The simulation results and discussions of these results are given in this section. The results include those discussed in section 3.1. In this section, the plotting stops when the temperature reaches the critical temperature minus 10 °C, which is the general practical limit of each working fluid [4]. 4.1. Efficiency and Work Figure 5 shows the optimized first law efficiency at different exhaust gas temperatures. Figure 6 shows the optimized amount of work produced by the cycle assuming a unit mass flow rate of the exhaust gas (1 kg/s). 14

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