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Application of Computational Fluid Dynamics Analysis in Improving Valve Design

机译:计算流体动力学分析在改进阀门设计中的应用

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Computational Fluid Dynamics (CFD) analysis software is being developed by many companies and it is a valuable tool in designing hydraulic components. CFD analysis can provide accurate predictions of pressure drop in fluid flow paths and offer insight into the primary source of losses. When used in conjunction with solid modeling design software, the process of optimizing a design can be accomplished much quicker, reducing development costs and time. This paper presents a CFD analysis of an existing valve design and compares it to an improved design. The source of the primary losses of the existing valve will be identified which will lead to modifications to design features that minimize those losses. These modifications will be modeled and analyzed for predicted improvements. Pressure drop tests will be conducted on the original design to verify the analysis. Internal pressure loading of valve parts cannot easily be determined by testing. The results of the CFD analysis, however, will be used to determine pressure loading of valve components which can affect performance and durability.
机译:许多公司开发了计算流体动力学(CFD)分析软件,它是设计液压元件的宝贵工具。 CFD分析可以提供流体流动路径中压降的准确预测,并向主要损耗源提供了深入的洞察。当与实心建模设计软件结合使用时,可以更快地完成优化设计的过程,降低开发成本和时间。本文介绍了现有阀门设计的CFD分析,并将其与改进的设计进行比较。将识别现有阀门的主要损耗来源,这将导致对设计功能的修改,以最小化这些损失。将对预测的改进进行建模和分析这些修改。将在原始设计上进行压降测试以验证分析。阀门部件的内部压力负载不能通过测试轻松确定。然而,CFD分析的结果将用于确定可能影响性能和耐用性的阀组件的压力负荷。

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