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SIMILARITY BASED PERFORMANCE PREDICTION OF ORGANIC RANKINE CYCLE TURBINE USING AIR CONDITION DATA

机译:基于空调数据的有机兰基循环涡轮机基于相似性的性能预测

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The Organic Rankine Cycle (ORC) is an effective technology to recover the waste heat of the internal combustion engine (ICE) exhaust gas and coolant water. Performance prediction and matching of the expander is a key issue, during designing the ORC system. Radial turbines have the advantage in the ORC system for the ICE waste heat recovery because of its small size and high efficiency compared with volumetric expanders. But the ORC turbines design database is insufficient and the organic gas test rig is difficult to be constructed. As a result, this paper, based on similarity theory, establishes a performance prediction method for fully using the mature design and experimental datum of air turbines. By this prediction method, turbine performance can be obtained when its working fluid is changed from the air to the organic gas. Computational fluid dynamics (CFD) solution has been obtained for a calculation example, and the validity of the turbine performance prediction method is demonstrated by comparing the ORC turbine's predicted performance with the simulated performance. The results show that almost all of the performance parameter's predictive deviation is less than 5%. This paper comes to a conclusion that designing an R123 gas turbine is similar with designing an air turbine whose rotation rate is twice that of the former, expansion ratio is twice that of the former, power is four times twice that of the former at the same mass flow rate.
机译:有机朗肯循环(ORC)是一种有效的技术,可回收内燃机(ICE)废气和冷却水的废热。在设计ORC系统期间,扩展器的性能预测和匹配是关键问题。径向涡轮在ORC系统中具有ICE余热回收的优势,因为与体积膨胀机相比,其体积小且效率高。但是,ORC涡轮机设计数据库不足,有机气体试验台也难以建造。因此,本文基于相似性理论,建立了一种充分利用成熟的涡轮机设计和试验数据的性能预测方法。通过这种预测方法,当涡轮机的工作流体从空气变为有机气体时,可以获得涡轮机的性能。通过计算实例获得了计算流体动力学(CFD)解决方案,并通过将ORC涡轮机的预测性能与模拟性能进行比较,证明了涡轮机性能预测方法的有效性。结果表明,几乎所有性能参数的预测偏差都小于5%。本文得出的结论是,设计R123燃气轮机类似于设计转速为前者两倍,膨胀比为前者两倍,功率为前者两倍的空气涡轮机。质量流率。

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