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CFD Simulations of Oil Flow and Flow Induced Forces Inside Hydraulic Valves

机译:液压阀内部油流量和流动诱导力的CFD模拟

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This paper describes a method of using Computational Fluid Dynamics (CFD) computer simulations for hydraulic oil flow inside hydraulic valves. The main objective is to study hydraulic forces induced by oil flow on the actuators of hydraulic valves with the aim of minimizing their effects. Integration of solved pressure and velocity fields from CFD simulation solutions over related valve component surface areas was employed to obtain the desirable Flow Induced Force (FIF). Different valve metering geometry has been simulated using a commercially available ANSYS/FLOTRAN CFD software program. The hydraulic oil flow inside valves is assumed steady-state and in a turbulent mode. The complete simulation procedure is presented from parametric geometry creation with 3-D solid CAD modeler of Pro/ENGINEER through final postprocessing of results. Simulation results of three hydraulic valve applications are presented. Tests have been performed to measure FIF and oil flow rates. CFD results are compared to experimental results, in some cases, with good correlation.
机译:本文介绍了一种使用用于液压阀内的液压油的计算流体动力学(CFD)计算机模拟方法。主要目的是研究通过液压阀的致动器上的油流引起的液压力,目的是最小化它们的效果。采用CFD仿真解决方案的浮动压力和速度场的整合与相关阀分量表面区域进行了可见的流动诱导力(FIF)。使用商业上可用的ANSYS / FLOTRAN CFD软件程序模拟了不同的阀计计量几何。阀门内部阀门内部稳态和湍流模式。完整的仿真过程是通过参数几何创作,通过Pro / Engineer的3-D Solid CAD Modeler通过最终的结果进行了结果。提出了三种液压阀应用的仿真结果。已经进行了测试以测量FIF和油流量。将CFD结果与实验结果进行比较,在某些情况下,相关性良好。

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