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Comparison of the Trilateral Flash Cycle and Rankine Cycle with Organic Fluid Using the Pinch Point Temperature

机译:三边闪光循环和Qualine循环的比较使用夹点温度

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摘要

Low-temperature heat utilization can be applied to waste heat from industrial processes or renewable energy sources such as geothermal and ocean energy. The most common low-temperature waste-heat recovery technology is the organic Rankine cycle (ORC). However, the phase change of ORC working fluid for the heat extraction process causes a pinch-point problem, and the heat recovery cannot be efficiently used. To improve heat extraction and power generation, this study explored the cycle characteristics of the trilateral flash cycle (TFC) in a low-temperature heat source. A pinch-point-based methodology was developed for studying the optimal design point and operating conditions and for optimizing working fluid evaporation temperature and mass flow rate. According to the simulation results, the TFC system can recover more waste heat than ORC under the same operating conditions. The net power output of the TFC was approximately 30% higher than ORC but at a cost of higher pump power consumption. Additionally, the TFC was superior to ORC with an extremely low-temperature heat source (<80 °C), and the ideal efficiency was approximately 3% at the highest work output condition. The TFC system is economically beneficial for waste-heat recovery for low-temperature heat sources.
机译:低温热利用可以应用于从工业过程或可再生能源等地热和海洋能源的浪费热量。最常见的低温废热回收技术是有机朗肯循环(ORC)。然而,用于热提取过程的ORC工作流体的相变导致捏点问题,不能有效地使用热量回收。为了改善热提取和发电,本研究探讨了在低温热源中的三边闪循环(TFC)的循环特性。开发了一种基于PINCH点的方法,用于研究最佳设计点和操作条件,以及优化工作流体蒸发温度和质量流量。根据仿真结果,TFC系统可以在相同的操作条件下恢复比ORC更多的废热。 TFC的净功率输出比ORC高约30%,但以较高的泵功耗成本高约30%。另外,TFC优于ORC,具有极低的热源(<80℃),并且在最高工作输出条件下理想效率约为3%。 TFC系统对低温热源的废热回收是有益的。

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