球阀流量控制的CFD分析

IF 0.1 Q4 PHYSICS, MULTIDISCIPLINARY
F. Hazzi, C. Cardona, C. Pairetti, C. Venier
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引用次数: 0

摘要

管道系统中的流量控制存在于许多工程应用中,并由不同的组件进行。特别是,球阀由一个带有圆柱形孔的塞组成,该孔通过旋转调节流量,改变有效通道截面。本文采用计算流体力学(CFD)方法对这类装置进行了研究。仿真使用SimScale计算平台,基于免费的OpenFOAM软件。该分析的主要目的是建立并验证一个数值工具,以预测正规化阀门的开度百分比与压力损失之间的关系,分析阀塞附近的流动结构。通过与解析解和数值模拟的比较,验证了所采用模型在等截面和局部化结构管道轴对称问题中的有效性。然后对实际球阀在不同开度下的湍流状态进行了研究,并与实验数据和其他作者的数值模拟结果进行了比较。对所研究的每个开口角的压力损失系数都有很好的一致性,验证了其与雷诺数无关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CFD ANALYSIS ON FLOW CONTROL USING A BALL VALVE
Flow control in piping systems is present in many engineering applications and is carried out by different components. In particular, ball valves consist of a plug with a cylindrical orifice that regulates the flow through rotation, modifying the effective passage section. In the present work, this type of device is studied using Computational Fluid Dynamics(CFD). The simulations are carried out using the SimScale calculation platform, based on the free OpenFOAM software. The main objective of this analysis is to set and validate a numerical tool to predict the relationship between the opening percentage and the pressure loss for normalized valves, analyzing the flow structures developed in the vicinity of the plug. The models used are validated in axisymmetric problems of conduits with constant section and with a localized structure, comparing with the analytical solution and with numerical simulations, respectively. Then the case of a real ball valve in a turbulent regime at different openings is studied, comparing the results with experimental data and with numerical simulations carried out by other authors. A good agreement of the pressure loss coefficient is observed for each of the opening angles studied, verifying its independence on the Reynolds number.
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来源期刊
Anales AFA
Anales AFA PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.40
自引率
0.00%
发文量
43
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