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Supercritical CO2 Cycle for ICE Waste Heat Recovery

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Supercritical CO2 Cycle for ICE Waste Heat Recovery ( supercritical-co2-cycle-ice-waste-heat-recovery )

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Processes 2020, 8, x FOR PEER REVIEW Processes 2020, 8, 216 Processes 2020, 8, x FOR PEER REVIEW Figure 4. T-s diagram of pre-compression S-CO2 cycle. 5 of 23 5 of 23 5 of 23 2.4. Split-Flow Recompression S-CO2 Cycle 2.4. Split-Flow Recompression S-CO2 Cycle Figure 4. T-s diagram of pre-compression S-CO2 cycle. Figure 4. T-s diagram of pre-compression S-CO2 cycle. 2.4. STphliet-lFalyoowuRt aecnodmTpr-sesdsioangrSa-mCOo2fCthyeclesplit-flow recompression S-CO2 cycle are shown in Figures 5 The layout and T-s diagram of the split-flow recompression S-CO2 cycle are shown in Figures 5 and 6, respectively. In a recompression S-CO2 cycle, the flow is split at state 4, and CO2 in the cold The layout and T-s diagram of the split-flow recompression S-CO2 cycle are shown in Figures 5 and 6, respectively. In a recompression S-CO2 cycle, the flow is split at state 4, and CO2 in the cold side side with high specific heat is matched to the hot side large flow with lower specific heat in the low and 6, respectively. In a recompression S-CO2 cycle, the flow is split at state 4, and CO2 in the cold with high specific heat is matched to the hot side large flow with lower specific heat in the low LTR to LTR to maximize the cycle efficiency. The fluid flow is divided into two parts at state 4, one part side with high specific heat is matched to the hot side large flow with lower specific heat in the low maximize the cycle efficiency. The fluid flow is divided into two parts at state 4, one part working fluid working fluid flows through the cooler (C), main compressor (MC), LTR, HTR and heater, LTR to maximize the cycle efficiency. The fluid flow is divided into two parts at state 4, one part flows through the cooler (C), main compressor (MC), LTR, HTR and heater, successively. The other successively. The other part working fluid is drawn into the re-compressor (RC) without cooling. working fluid flows through the cooler (C), main compressor (MC), LTR, HTR and heater, part working fluid is drawn into the re-compressor (RC) without cooling. Then, the working fluid Then, the working fluid from the MC at state 7 and LTR at state 8 are mixed at state 9. The ratio of successively. The other part working fluid is drawn into the re-compressor (RC) without cooling. from the MC at state 7 and LTR at state 8 are mixed at state 9. The ratio of the mass flow in the RC the mass flow in the RC present in the total mass flow in the cycle is defined as the split ratio (SR). Then, the working fluid from the MC at state 7 and LTR at state 8 are mixed at state 9. The ratio of present in the total mass flow in the cycle is defined as the split ratio (SR). the mass flow in the RC present in the total mass flow in the cycle is defined as the split ratio (SR). Figure 5. Operating principle of the split-flow recompression S-CO2 cycle. RC: re-compressor. Figure 5. Operating principle of the split-flow recompression S-CO2 cycle. RC: re-compressor. Figure 5. Operating principle of the split-flow recompression S-CO2 cycle. RC: re-compressor.

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