A high head pumped storage power plant rehabilitation project

K. Nakamura, T. Shigenobu, S. Harada, T. Muraki
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引用次数: 2

Abstract

This paper presents the development of hydraulic performance in a high head Francis pump-turbine runner which is adopted at pumped storage power plant. In order to achieve the improvements of turbine efficiency, pump efficiency and cavitation performance for turbine and pump mode throughout a wide operating range, a new runner was designed by the latest Computational Fluid Dynamics (CFD) analysis. The validity of the new design method was evaluated by the model performance tests and this model is going to be adopted the prototype pump-turbine plant “Ohira Pumped Storage Power Plant” for Kyushu Electric Power Co., Inc.. The total maximum pump head is 546m and maximum turbine output is 256MW. The results were confirmed that the optimized runner presented extremely better anti-cavitation and high efficiency performance at both operation modes compared with the existing design runner.
某高水头抽水蓄能电站改造工程
介绍了抽水蓄能电站采用的高水头混流式水泵水轮机转轮水力性能的发展情况。为了在更大的工作范围内实现水轮机效率、水泵效率和汽蚀性能的提高,采用最新的计算流体动力学(CFD)分析方法设计了一种新型转轮。通过模型性能试验验证了新设计方法的有效性,并将在九州电力公司“大平抽水蓄能电站”样机中采用该设计方法。总最大泵扬程546m,最大涡轮输出256MW。结果表明,与现有设计流道相比,优化后的流道在两种运行模式下均具有极好的抗汽蚀性能和高效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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