3-D computational fluid dynamic analysis of effect of tip clearance on the performance of impulse turbine for wave energy conversion

A. Thakker, T. Dhanasekaran, T. Setoguchi, M. Takao
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Abstract

This paper depicts numerical analysis on impulse turbine of 0.6 m diameter with fixed guide vanes for wave energy conversion. From the earlier investigations, it is found that one of the reasons for the mismatch between computed and experimental data is due to neglecting tip clearance effect. Hence, a three-dimensional (3-D) model with tip clearance has been generated with structured grids to predict the internal flow and performance of the turbine. As a result, it is found that the comparison between computed and experimental data is good. Computation has been carried out for various tip clearances to understand the effect of tip clearance leakage flow on such unconventional turbine. The change in flow behavior in the turbine blade passage due to tip clearance flow has been studied by comparing the results with without tip clearance, which is impossible by experiments. It is predicted that the efficiency of the turbine has been reduced about 4%, due to tip clearance flow at higher flow coefficients.
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叶尖间隙对波浪能转换脉冲涡轮性能影响的三维计算流体动力学分析
本文对直径0.6 m带固定导叶的波浪能转换脉冲水轮机进行了数值分析。从先前的研究中发现,计算数据与实验数据不匹配的原因之一是忽略了叶尖间隙效应。因此,一个具有叶尖间隙的三维(3-D)结构网格模型被生成,用于预测涡轮内部流动和性能。结果表明,计算值与实验值的对比较好。为了了解叶尖间隙泄漏流对这种非常规涡轮的影响,对不同叶尖间隙进行了计算。通过与无叶尖间隙的结果对比,研究了叶尖间隙对涡轮叶片流道内流动特性的影响,这是实验无法做到的。据预测,在较高的流量系数下,由于叶尖间隙流动,涡轮的效率降低了约4%。
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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