混流泵作为水轮机在偏远农村微水电厂应用的数值与实验研究

Sarid Mejiartono, M. Hikmawan, A. Nugraha
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引用次数: 1

摘要

在离网电气化应用中使用泵而不是涡轮/泵即涡轮(PAT)是印度尼西亚努力实现电能均衡的重要方法之一。PAT应用中的主要问题是如何预测水泵作为水轮机使用时的性能,找出其最佳特性和效率点。本文讨论了微型水电厂混流型水泵作为水轮机时,水泵性能指标的确定方法。采用基于计算流体动力学(CFD)的软件模拟的数值方法,根据以往的研究,该方法已被证明是准确的,用于获得作为涡轮的泵特性的预测。然后通过直接试验验证了CFD仿真结果的PAT特性。利用ANSYS Fluent软件对混流泵进行CFD数值模拟,得到了混流泵作为涡轮在不同转速下的性能曲线。每种转速的最高效率范围为35-40%。试验结果直接显示了PAT的特性,性能范围与数值模拟结果接近,相差10%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical and experimental study of mixed flow pump as turbine for remote rural micro hydro power plant application
The use of a pump as opposed to a turbine/pump as turbine (PAT) for off-grid electrification applications is one of the important ways to be considered in efforts to equalize electrical energy in Indonesia. The main problem in PAT applications is how to predict pump performance if applied as a turbine to find out its best characteristics and efficiency points. This study discusses a method to find pump performance specifications when using a pump with a mixed flow type as a turbine for Micro Hydro Power Plants. The numerical method by utilizing computational Fluid Dynamics (CFD) based software simulations that have been proven to be accurate according to previous studies was selected for use in obtaining predictions of the pump characteristics as turbines. Then the PAT characteristics of the CFD simulation results are validated by conducting direct testing. The results of the CFD numerical simulation using ANSYS Fluent software show the performance curve of a mixed flow pump operated as a turbine at various rotating speeds. The highest efficiency for each rotating speed ranges from 35-40%. The test results directly show the PAT characteristics, that the performance range is close to the numerical simulation results with a difference of 10%.
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CiteScore
0.70
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