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The Flow Field of Undershot Cross-Flow Water Turbines Based on PIV Measurements and Numerical Analysis

机译:基于PIV测量和数值分析的暗流横流式水轮机的流场

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The ultimate objective of this study is to develop a water turbine appropriate for low-head open channels to effectively utilize the unused hydropower energy of rivers and agricultural waterways. The application of a cross-flow runner to open channels as an undershot water turbine has been considered and, to this end, a significant simplification was attained by removing the turbine casing. However, the flow field of an undershot cross-flow water turbine possesses free surfaces, and, as a result, the water depth around the runner changes with variation in the rotational speed such that the flow field itself is significantly altered. Thus, clear understanding of the flow fields observed with free surfaces to improve the performance of this turbine is necessary. In this study, the performance of this turbine and the flow field were evaluated through experiments and numerical analysis. The particle image velocimetry technique was used for flow measurements. The experimental results reflecting the performance of this turbine and the flow field were consistent with numerical analysis. In addition, the flow fields at the inlet and outlet regions at the first and second stages of this water turbine were clarified.
机译:这项研究的最终目的是开发一种适用于低水位明渠的水轮机,以有效利用河流和农业水道的未利用水能。已经考虑将横流流道作为底射式水轮机应用于明渠,并且为此,通过移除水轮机壳体实现了显着的简化。然而,底射式错流水轮机的流场具有自由表面,结果,转轮周围的水深随转速的变化而变化,从而流场本身发生了显着变化。因此,必须清楚地了解在自由表面观察到的流场,以改善该涡轮机的性能。在这项研究中,通过实验和数值分析评估了该涡轮机的性能和流场。粒子图像测速技术用于流量测量。反映该涡轮机性能和流场的实验结果与数值分析吻合。另外,阐明了该水轮机的第一级和第二级的入口和出口区域的流场。

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