Numerical Investigation of a Globe Control Valve and Estimating its Loss Coefficient at Different Opening States

IF 1.5 Q3 MECHANICS
Saber Rezaey
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引用次数: 2

Abstract

One of the most important components of fluid transmission systems is a control valve located in the pipelines of oil, gas, etc. The primary purpose of this valve is to control the rate of fluid flow passing through it under pressure changes and the most important issue is to investigate the flow’s characteristics in order to achieve a proper geometry to control the flow rate and pressure as desired. The valves used in pipelines add to the overall head loss of the system. Therefore, valves with proper geometry can reduce these minor losses and finally decrease total energy losses. In this paper, a globe control valve is modeled and then numerically investigated to extract its functional relation, which relates pressure ratio to inlet Reynolds number, and estimate its loss coefficient at the valve’s different opening states which have not been addressed completely before and can be beneficial for the selection and usage of globe valves under certain conditions. According to the results, it is found that pressure ratio and loss coefficient are functions of inlet velocity and the valve’s opening state’s percentage, which are directly related to the valve’s geometry. When the valve opens, the rate of change in pressure ratio and loss coefficient are very sharp. Gradually, this rate decreases and the results tend to the final value at the valve’s fully opened state.
截止阀的数值研究及不同开启状态下的损耗系数估算
流体传输系统最重要的部件之一是位于石油、天然气等管道中的控制阀。该阀的主要目的是在压力变化的情况下控制通过该阀的流体流量,最重要的问题是研究流量的特性,以实现适当的几何形状,从而根据需要控制流量和压力。管道中使用的阀门增加了系统的总水头损失。因此,具有适当几何形状的阀门可以减少这些小损失,并最终减少总能量损失。本文对一个球形控制阀进行了建模和数值研究,以提取其与压力比和入口雷诺数之间的函数关系,并估计其在不同开启状态下的损失系数,这些问题以前没有完全解决,在某些条件下有利于球形阀的选择和使用。结果表明,压力比和损失系数是入口速度和阀门开启状态百分比的函数,它们与阀门的几何形状直接相关。当阀门打开时,压力比和损失系数的变化率非常急剧。该速率逐渐降低,结果趋于阀门全开状态下的最终值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.70
自引率
8.30%
发文量
0
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