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The Strength Analysis of Francis Turbine Runner Based on the Fluid-Solid Coupling

机译:基于流体 - 固耦合的竞争汽轮机转轮的强度分析

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This paper does unidirectional fluid-solid coupling calculation on the runner strength under three designed head loading conditions of a certain Francis turbine in the north-eastern China. The water pressure on the blade in the flow fields of different operating conditions is calculated by means of CFD software CFX. With the help of ansys workbench, the water pressure is loaded to the blade as structural load to conclude the static stress distribution and deformation of the runner under different operating conditions. The results show that the maximum static stress increases with the rise of the flow and appears near the influent side of the blade connected to the runner crown; the maximum deformation increases with the rise of the flow and appears on the band. The results provides effective basis for the structural design and safe operation of the Francis turbine.
机译:本文对北方东北地区一台Francis汽轮机的三种设计头部装载条件下的转轮强度进行单向流体固体耦合计算。 通过CFD软件CFX计算不同操作条件的流场的叶片上的水压。 在ANSYS工作台的帮助下,水压装载到刀片,作为结构负载,以在不同的操作条件下结束流道的静态应力分布和变形。 结果表明,随着流动的升高,最大静态应力增加,并且在连接到转轮冠部的叶片的流水侧附近出现。 随着流量的升高并出现在频段上的最大变形增加。 结果为弗朗西斯汽轮机的结构设计和安全操作提供了有效的基础。

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