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The numerical analysis of a large diameter spherical valve

机译:大口径球阀的数值分析

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The hydraulic performance of a spherical valve is significant in ensuring that hydropower plants work efficiently, steadily, and above all, safely. However, it is almost impossible to conduct live experimental studies on a larger-sized spherical valve in the laboratory. In this paper, the hydraulic performance of a spherical valve with a diameter of 1,100 mm was numerically studied. Three-dimensional numerical simulations were conducted with the commercial software ANSYS-CFX (R) to investigate the flow coefficient of a spherical valve and the flow patterns inside of the valve under different working conditions. In this study, the flow coefficient and the flow fields inside of this spherical valve were obtained. The computed flow coefficient of this spherical valve agrees well with the field measurement data of hydropower plants. Above all, this methodology of numerical simulation can aid in designing future spherical valves and in guiding the operation and maintenance of hydropower plants.
机译:球形阀的液压性能对于确保水力发电厂有效,稳定且最重要的是安全运行至关重要。但是,几乎不可能在实验室中对大型球形阀进行现场实验研究。本文对直径为1100mm的球形阀的液压性能进行了数值研究。使用商业软件ANSYS-CFX(R)进行了三维数值模拟,以研究球形阀的流量系数以及在不同工作条件下阀内部的流型。在这项研究中,获得了该球形阀内部的流动系数和流场。该球形阀的计算流量系数与水电厂的现场测量数据非常吻合。最重要的是,这种数值模拟方法可以帮助设计未来的球形阀,并指导水力发电厂的运行和维护。

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