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The Optimal Design based on CFD combined with CAD for Turbine Runner

机译:基于CFD和CAD的涡轮转轮优化设计。

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摘要

Modern design method can not only make up the shortcomings of the traditional design method, but also be compared on the computer, it can save a lot of trial and testing costs in new product development and play an important role in optimizing the existing products. This paper studies the modern design methods of hydraulic machinery by the use of computational fluid dynamics (CFD) combined with CAD, which improves the blade shape according the analysis results to achieve the best design. Firstly the CFD calculation of the flow is applied to the runner blade of francis, then we analysis and evaluate the flow character and cavitation characteristics of the flow field in the inlet of the blade under the large flow, finally we carry on improving the inlet flow and cavitation characteristics by rebuilding the blade shape, the simuliaton results show the modified runner has better resistance to cavitation
机译:现代设计方法不仅可以弥补传统设计方法的不足,而且可以在计算机上进行比较,它可以节省新产品开发中的大量试验和测试成本,并在优化现有产品方面发挥重要作用。本文结合计算流体力学(CFD)和CAD技术,研究了液压机械的现代设计方法,根据分析结果对叶片形状进行了改进,以达到最佳设计效果。首先将流的CFD计算应用于弗朗西斯的流道叶片,然后分析并评估大流量下叶片入口流场的流动特性和空化特性,最后对入口流量进行改进通过重建叶片形状获得气蚀特性,模拟结果表明,改进的流道具有更好的抗气蚀能力

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