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首页> 外文期刊>International Journal of Fluid Machinery and Systems >Improvement of Performance of Undershot Cross-Flow Water Turbines Based on Shock Loss Reduction
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Improvement of Performance of Undershot Cross-Flow Water Turbines Based on Shock Loss Reduction

机译:基于减震损失的底冲错流水轮机性能改进

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Undershot cross-flow turbines are applicable to shallow open channel flows and are characterized by a simple structure free of guide vanes or a casing. Since these water turbines operate in a free surface flow field, the optimum inlet blade angle and outlet blade angle are considered to vary with the flow rate in the open channel; however, guidelines for setting these angles are yet to be established. In this study, a method to improve the performance of an undershot cross-flow water turbine based on shock loss reduction was proposed. First, by varying the blade angle of the straight blades of the turbine, the inlet blade angle and outlet blade angle which reduced shock loss in the first-stage inlet region and second-stage inlet region were investigated through free surface flow analysis. From the results, it was shown that by taking the inlet and outlet blade angles which minimize the first-stage and second-stage shock losses for straight blades and applying them to curved blades, shock loss is reduced, thereby improving turbine efficiency and turbine output.
机译:Undershot错流式涡轮机适用于浅水明渠流,其特点是结构简单,没有导向叶片或机壳。由于这些水轮机在自由表面流场中运行,因此最佳进口叶片角和出口叶片角被认为随明渠中的流速而变化;但是,设置这些角度的准则尚未建立。在这项研究中,提出了一种基于减震损失降低底冲式横流水轮机性能的方法。首先,通过改变涡轮机直叶片的叶片角,通过自由表面流分析研究了减小第一级入口区域和第二级入口区域的冲击损失的入口叶片角和出口叶片角。从结果表明,通过采用使直叶片的第一级和第二级冲击损失最小的进口和出口叶片角度并将其应用于弯曲叶片,可以减少冲击损失,从而提高涡轮效率和涡轮输出。

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