首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Development of rotating disc apparatus for test of sediment-induced erosion in Francis runner blades
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Development of rotating disc apparatus for test of sediment-induced erosion in Francis runner blades

机译:用于测试弗朗西斯转轮叶片中沉积物侵蚀的转盘设备的开发

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摘要

Sediment erosion in hydraulic turbines has been a major challenge in development of hydropower projects in Nepal. The hard abrasive material present in the river water of this region cause rapid erosion of turbine components and affect the performance of turbines, which in turn decreases the efficiency, reliability and operating life of such projects. There is a need of a new design methodology to develop turbines to resist erosion in high sediment conditions. The first step towards such development would be to investigate different design options in laboratory, which needs a standard methodology to carry out sediment erosion test in controlled environment. This study is focused on design and development of a laboratory test setup suitable for carrying out sediment erosion test in Francis runner blades. A test rig called rotating disc apparatus has been developed and installed in Turbine Testing Laboratory, Kathmandu University, Nepal, which uses Francis runner blades as test specimens. The test carried out in this setup has shown that the Francis turbines designed with traditional design methodology is highly prone to loss of material due to sediment erosion.
机译:水力涡轮机中的泥沙侵蚀一直是尼泊尔水电项目开发中的主要挑战。存在于该地区河水中的硬质磨料会导致涡轮机部件快速腐蚀,并影响涡轮机的性能,进而降低此类项目的效率,可靠性和使用寿命。需要一种新的设计方法来开发涡轮,以抵抗高沉积条件下的侵蚀。进行此类开发的第一步是研究实验室中的不同设计方案,这需要一种标准方法来在受控环境中进行沉积物侵蚀测试。这项研究的重点是设计和开发适合在弗朗西斯转轮叶片中进行沉积物侵蚀测试的实验室测试装置。已经在尼泊尔加德满都大学的涡轮测试实验室开发并安装了一种称为转盘设备的测试台,该测试台使用弗朗西斯转轮叶片作为测试样本。在这种设置下进行的测试表明,采用传统设计方法设计的混流式水轮机极易因沉积物侵蚀而损失材料。

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