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Optimization of internal flow channel of a right-angle globe valve based on CFD

机译:基于CFD的直角截止阀内部流道优化

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Aiming to solve the problem of fluid noise caused by right-angle globe valve (RGV) in pipeline systems, this paper provides optimal designs of the valve cone angle and the coordinate angle between the valve seat and cone on the basis of the numerical calculation results of RGV by adopting CFD method. Comparative analysis of the sound power level for noise and the change of cavitation number according to the change of the opening size and the inlet velocity before and after optimization demonstrates that in the same working condition, the sound power level for noise produced by the RGV reduced over 5 dB after optimization, and the cavitation number is reduced over 40% when the valve opening is less than 50%. The above-mentioned data indicate that the optimal design provided by this paper can improve the noise performance of the RGV significantly. And the research results of this paper can, to some extent, serve as guidance for the optimal design of flow passages of other kinds of valve in pipeline systems.
机译:为了解决管道系统中直角截止阀(RGV)引起的流体噪声问题,根据数值计算结果,对阀锥角和阀座与锥角之间的坐标角进行了优化设计。采用CFD方法分析RGV。根据优化前后开口尺寸和进气速度的变化对噪声声功率级和空化数的变化进行比较分析,结果表明,在相同的工作条件下,RGV产生的噪声声功率级降低了经过优化后超过5 dB,当阀开度小于50%时,气穴数减少40%以上。上述数据表明,本文提供的优化设计可以显着提高RGV的噪声性能。并且本文的研究结果在一定程度上可以为管道系统中其他阀门的流道的优化设计提供指导。

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