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Cavitation research results of hydroturbine impeller blades and their analysis

机译:Hydriturn叶轮叶片的空化研究结果及其分析

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Abstract. Cavitation erosion affects the hydropower plants operation mode, destroys the surface of water-conducting way, affects the efficiency coefficient as well as the turbine output. The most common damage is observed on water-conducting ways having poor streamline shape, various ledges, irregularities along the water flow. Disruptive cavitations are formed initially on the rotation axes of vortexes, and the caverns of disruptive cavitation develop with the period subordinating the Strouhal Law. One of the methods of cavitational erosion field studies is the method of obtaining high-speed cavitational erosion of metal plates, which has low resistance to cavitation mechanical effects. It provides an opportunity to determine erosion degree and intensity at different modes of hydropower plants operation. The paper demonstrates the results of studying the cavitational erosion process of hydroturbine impeller blades of Zhiguli Hydroelectric Station (HS). Cavitation tests are conducted for three operating modes. Technological peculiarities are also described. The paper presents results of turbine blades of Unit 5 for three operation modes. The destruction areas of impeller blades peripheral edges are visualized. The study provides the results of field and laboratory cavitation tests of hydroturbine elements that serve as recommendations for repairing and restoration of damaged hydroelectric units of Zhiguli HS.
机译:抽象的。空化腐蚀影响水电站操作模式,破坏排水方式的表面,影响效率系数以及涡轮机输出。在具有差的流线形状,各种横向,沿水流的不规则性的排水方式观察到最常见的损伤。最初在涡旋的旋转轴上形成破坏性空腔,并且随着斯特劳尔法律的时期,破坏性空化的洞穴发生。空化侵蚀场研究的方法之一是获得金属板高速空分腐蚀的方法,其具有低阻抗机械效果。它提供了确定不同模式运行模式的侵蚀程度和强度的机会。本文展示了研究志力水电站(HS)水曲线叶片叶片的空化腐蚀过程的结果。用于三种操作模式进行空化测试。还描述了技术特性。本文提出了三种操作模式的单元5的涡轮叶片的结果。叶轮叶片周边边缘的破坏区域被可视化。该研究提供了水曲线元素的现场和实验室空化试验结果,该元素是用于修复和恢复秋水HS的受损水力电量的建议。

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