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Thermodynamic Performance Comparison of Single-pressure and Dual-pressure Evaporation Organic Rankine Cycles Using R1234ze(E)

机译:使用R1234ze(E)的单压力和双压蒸发有机朗朗循环的热力学性能比较

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The organic Rankine cycle (ORC) presents a great potential in the efficient heat-power conversion of low and medium temperature (<;350°C) thermal energy. Dual-pressure evaporation ORCs can significantly reduce the exergy loss in the endothermic process. While, variations of optimal cycle parameters and the superiority in the thermodynamic performance compared with the single-pressure evaporation ORC remain indeterminate for various heat source temperatures. This paper focuses on the dual-pressure evaporation ORC using R1234ze(E) driven by the 100-200°C heat sources without the outlet temperature limit. Two-stage evaporation pressures and the high-pressure evaporator outlet temperature were optimized, and the system thermodynamic performance was compared with that of the single-pressure evaporation ORC. Results show that the maximum net power output of the dual-pressure evaporation ORC system is generally larger than that of the single-pressure evaporation ORC system for the heat source temperature below 150°C. The heat source temperature is lower, the increment of the maximum net power output is generally larger; and the maximum increment is 24.3%. When the endothermic process minimal temperature difference of the single-pressure evaporation ORC occurs at the evaporation bubble point, the dual-pressure evaporation ORC generally can further increase the system net power output.
机译:有机朗肯循环(ORC)在低温和中温(<; 350°C)热能的有效热功率转换中具有很大的潜力。双压蒸发兽人可显着降低吸热过程中的漏洞。虽然,与单压蒸发磁体相比,最佳循环参数和热力学性能的优越性的变化保持不确定,但是对于各种热源温度。本文侧重于使用由100-200°C热源驱动的R1234ze(e)的双压蒸发兽人,而没有出口温度限制。优化了两级蒸发压力和高压蒸发器出口温度,并将系统热力学性能与单压蒸发兽人进行比较。结果表明,双压蒸发ORC系统的最大净功率输出一般大于150°C低于150°C的热源温度的单压蒸发兽人系统。热源温度较低,最大净功率输出的增量通常大;最大增量为24.3 %。当在蒸发泡点发生单压蒸发兽官的吸热过程最小温差时,双压蒸发逆转录通常可以进一步增加系统净功率输出。

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