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Experimental Testing of an Organic Rankine Cycle with Scroll-Type Expander

机译:涡旋式膨胀机进行有机朗肯循环的实验测试

摘要

An organic Rankine cycle (ORC) is a power cycle employing an organic working fluid. The term ORC is also applied generally to any Rankine cycle with a low-grade heat source (80° – 300oC). Because ORC are often employed in small-scale applications, use of positive displacement equipment is favored over the centrifugal units used in large-scale power plants. A key feature of a positive displacement expander is its built-in volume ratio. An ORC with a scroll-type expander is studied experimentally. Data for steady state tests of the ORC are presented according to a proposed steady state standard. It is shown that the adiabatic efficiency of the expander can be fully characterized by its filling factor and the expansion volume ratio imposed across it. In particular, the peak adiabatic efficiency occurs near a filling factor of unity and an expansion volume ratio near the built-in volume ratio of the expander. The influence of the expander’s performance on cycle efficiency is considered. A procedure is presented which allows prediction of cycle performance based on knowledge of the expander efficiency versus expansion volume ratio, cycle operating conditions, and working fluid. Using this procedure, an optimal expander can be chosen for a set of cycle operating conditions based on its peak efficiency and built-in volume ratio.
机译:有机朗肯循环(ORC)是采用有机工作流体的动力循环。 ORC这个术语通常也适用于任何带有低级热源(80°– 300oC)的兰金循环。由于ORC通常用于小规模应用,因此,与大型发电厂中使用的离心单元相比,正排量设备的使用更受青睐。容积式膨胀机的关键特征是其内置的体积比。实验研究了带有涡旋式膨胀机的ORC。根据提出的稳态标准提供了ORC稳态测试的数据。结果表明,膨胀机的绝热效率可以通过其填充系数和施加在其上的膨胀体积比来充分表征。尤其是,绝热效率的峰值在单位填充率附近,膨胀比在膨胀机的内置容积比附近发生。考虑膨胀机性能对循环效率的影响。提出了一种程序,该程序可以基于对膨胀机效率与膨胀体积比,循环工作条件和工作流体的了解来预测循环性能。使用此过程,可以根据其峰值效率和内置体积比为一组循环运行条件选择最佳膨胀器。

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