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Off-Design Performances of Subcritical and Supercritical Organic Rankine Cycles in Geothermal Power Systems under an Optimal Control Strategy

机译:最优控制策略下地热发电系统中亚临界和超临界有机朗肯循环的非设计性能

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The conditions of heat source and heat sink in a geothermal ORC system may frequently vary due to variations in geological conditions, ambient temperature and actual operation. In this study, an off-design performance prediction model for geothermal ORC systems is developed according to special designs of critical components, and an optimal control strategy which regards the turbine guide vane angle, the refrigerant pump rotational speed and the cooling water mass flow rate as control variables is proposed to maximize the net power output. Off-design performances of both subcritical and supercritical ORCs are analyzed. The results indicate that, under the optimal control strategy, the net power output of both ORCs increase with greater geothermal water mass flow rate, higher geothermal water inlet temperature and lower cooling water inlet temperature, which is mainly due to a greater working fluid mass flow rate, higher turbine inlet pressure and lower condensing pressure, respectively. The net power output of supercritical ORC is always greater than that of subcritical ORC within the range of this study, but the difference tends to decrease when supercritical ORC activates the geothermal water reinjection temperature restriction.
机译:由于地质条件,环境温度和实际操作的变化,地热ORC系统中的热源和散热器的状况可能经常发生变化。在这项研究中,根据关键部件的特殊设计,开发了地热ORC系统的非设计性能预测模型,并针对涡轮机导叶角度,制冷剂泵转速和冷却水质量流量提出了最优控制策略。建议使用控制变量来最大化净功率输出。分析了亚临界和超临界ORC的非设计性能。结果表明,在最优控制策略下,两种ORC的净功率输出均随着地热水质量流量的增加,地热水入口温度的升高和冷却水入口温度的降低而增加,这主要是由于工作流体质量流量增加所致。速度,更高的涡轮机入口压力和更低的冷凝压力。在本研究范围内,超临界ORC的净功率输出始终大于次临界ORC的净功率输出,但是当超临界ORC激活地热水回注温度限制时,差异趋于减小。

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