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Performance evaluation of an Organic Rankine Cycle (ORC) for power applications from low grade heat sources

机译:有机朗肯循环(ORC)对低等级热源电力应用的性能评估

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摘要

In this paper the performance of an Organic Rankine Cycle (ORC) module, which was designed and built for a specific power application, is experimentally characterized. The ORC tested satisfies the main specifications for an efficient power system, highlighting a volumetric expander with large built-in volume ratio. For tests development, a monitored test bench has been used and adapted to the planned test procedure, which consisted of varying the thermal power input for different condensing conditions. Thereby, 10 steady state points are achieved and analyzed according to thermal power input, gross and net electrical powers, electrical cycle efficiencies and expander effectiveness. The results show that the ORC performances are improved for higher thermal oil temperatures, capturing more thermal power, producing more electricity and achieving better cycle efficiencies. The maximum gross electrical efficiency obtained is 12.32%, for a heat source temperature about 155 °C and a direct dissipation to the ambient. Moreover, the expander reaches an electrical isentropic effectiveness about 65% for an optimum pressure ratio around 7, being a suitable system for power applications from low grade heat sources.
机译:在本文中,对有机朗肯循环(ORC)模块的性能进行了实验表征,该模块是为特定的电源应用而设计和制造的。经过测试的ORC满足了高效电源系统的主要规格要求,突出了具有大内置体积比的容积式膨胀机。为了进行测试开发,已使用受监控的测试台,并使其适应计划的测试程序,该程序包括针对不同的冷凝条件改变热功率输入。从而,根据热输入功率,总和净功率,电循环效率和膨胀机效率,获得并分析了10个稳态点。结果表明,在较高的导热油温度下,ORC性能得到了改善,可以捕获更多的热能,产生更多的电能,并获得更好的循环效率。对于约155°C的热源温度和直接散发到环境中,获得的最大总电效率为12.32%。此外,膨胀机在大约7的最佳压力比下达到约65%的电等熵效率,是适用于低级热源进行动力应用的系统。

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