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An experimental investigation on a recuperative Organic Rankine Cycle (ORC) system for electric power generation with low-grade thermal energy

机译:低级热能恢复有机朗肯循环(ORC)系统的实验研究

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In this study, a small-scale recuperative Organic Rankine Cycle (ORC) system capable of generating electric power using low-grade thermal energy was setup and experimentally investigated at different operating conditions. The experimental setup consisted of typical recuperative ORC system components, such as a turboexpander with high speed electricity generator, plate recuperator, finned-tube air cooled condenser, ORC fluid pump and plate evaporator. R245fa was used as the working fluid in the recuperative ORC system due to its zero ozone depletion potential (ODP) and appropriate thermophysical properties for ORC system. The working fluid was evaporated in a plate evaporator by hot thermal oil flow which was circulated and heated by exhaust flue gases of an 80kWe microturbine CHP unit. The test rig was fully instrumented and extensive experiments were carried out to compare and examine the influences of various important parameters including heat source temperature and ORC pump speed etc. on the performances of ORC systems with and without recuperator integration. The test results are essential in understanding the system operations and can contribute significantly to optimal system design, component selections and controls.
机译:在该研究中,在不同的操作条件下建立了一种能够产生电力的小型恢复有机朗肯循环(ORC)系统,并在实验上研究。实验设置包括典型的恢复兽人系统组件,例如具有高速发电机,板恢复器,翅片管空气冷凝器,兽人流体泵和板蒸发器的涡轮膨胀器。由于其零臭氧耗尽电位(ODP)和用于ORC系统的适当热神经性质,将R245FA用作恢复兽人系统中的工作流体。通过热热油流动在板式蒸发器中蒸发工作流体,该热油流是通过80kWe微电池CHP单元的排气烟道气体循环和加热的。测试钻机是完全仪器化的,进行了广泛的实验,以比较和检查各种重要参数,包括热源温度和兽人泵速度等的影响。在具有和不恢复整合的兽人系统的性能上。测试结果对于了解系统操作,并且可以对最佳系统设计,组件选择和控制进行显着贡献。

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