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Numerical simulation and structure improvement of double throttling in a high parameter pressure reducing valve

机译:高参数减压阀双节流的数值模拟与结构改进

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摘要

In this paper, a new pressure reducing valve (PRV) with an orifice plate is proposed. The main objective is to explain the mechanisms of pressure reduction and energy conversion in the new PRV. A numerical simulation method was used to investigate the PRV internal flow field and to analyze the throttling effects of the orifice plate and the transform of thermal parameters as outlet pressure, outlet temperature, velocity, and superheat. A structure improvement method for the valve body and orifice plate is put forward to reduce energy loss. The governing equations for internal flow numerical simulation are composed of the continuity, momentum, energy and k-ε transport equations, based on isotropic eddy viscosity theory. Different valve plug displacement models were built to describe the double throttling process. Our analysis shows that the steam pressure drops twice and the degree of superheat increases. There are also lots of eddies which clog the flow channel and disturb the steam flow in the valve cavity after the valve plug and the outlet cavity. After modifying the structure, the numerical results show a better performance of steam flow.
机译:本文提出了一种带孔板的新型减压阀(PRV)。主要目的是解释新型PRV的减压和能量转换机理。使用数值模拟方法研究了PRV内部流场,并分析了节流孔板的节流效果以及热参数如出口压力,出口温度,速度和过热的变换。提出了一种阀体和孔板的结构改进方法,以减少能量损失。基于各向同性涡流粘度理论,内部流动数值模拟的控制方程由连续性,动量,能量和k-ε输运方程组成。建立了不同的阀芯位移模型来描述双节流过程。我们的分析表明,蒸汽压力下降了两倍,过热度增加了。在阀塞和出口腔之后,还有很多涡流会阻塞流道并扰乱阀腔中的蒸汽流动。修改结构后,数值结果表明蒸汽流动性能更好。

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  • 来源
    《Journal of Zhejiang University SCIENCE A》 |2013年第2期|137-146|共10页
  • 作者单位

    Institute of Chemical Machinery and Process Equipment Zhejiang University">(1);

    Institute of Chemical Machinery and Process Equipment Zhejiang University">(1);

    Hangzhou Worldwides Valve Co. Ltd.">(2);

    Institute of Chemical Machinery and Process Equipment Zhejiang University">(1);

    Hangzhou Worldwides Valve Co. Ltd.">(2);

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