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Investigation of fluid flow through a valve pump flow control valve

机译:通过阀门泵流量控制阀对流体流动的研究

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The recent development of a new vane-type pump for power steering applications involved paying special attention to the fluid flow dynamics within the pump casing, especially in the flow control or supercharge region, where excess pump fluid flow is diverted to the intake region. Durability testing of initial designs revealed the presence of cavitation damage to the pump casing in the supercharging region. Subsequent Computational Fluid Dynamics (CFD) analyses as well as experimental Flow Visualization studies aided in resolving the cavitation-damage problem. The purpose of this paper is to describe the processes used in the CFD analyses and flow visualization studies. A two-dimensional (2D) convergence study was conducted to determine the CFD meshing requirements across the small orifice at the intersection of the flow-control valve and the supercharge port. An iterative procedure was employed to determine the operating position of the flow-control valve. The parallel flow-visualization studies were conducted with strobe-flash photography and videography through a window fabricated in the supercharge port. The window matched the port contours. Modification of the flow-control valve face was shown by CFD and flow visualization to be one possible solution for the cavitation-damage problem seen in the pump casing. Comparative results are provided for review.
机译:用于动力转向应用的新叶片式泵的最近开发涉及特别注意泵壳体内的流体流动动力学,特别是在流量控制或增压区域中,其中过剩泵流体流动转移到进气区域。初始设计的耐久性测试揭示了对增压区域中泵壳的空化损坏的存在。随后的计算流体动力学(CFD)分析以及实验性流动可视化研究辅助解析空化损伤问题。本文的目的是描述CFD分析和流量可视化研究中使用的过程。进行二维(2D)收敛研究以确定流量控制阀和增压端口的小孔上的CFD啮合要求。采用迭代程序来确定流量控制阀的操作位置。平行流动可视化研究通过闪光闪光摄影和摄像,通过高充电端口中制造的窗口进行。窗口匹配端口轮廓。通过CFD示出了流量控制阀面的变形例,并流动可视化是在泵壳中看到的空化损伤问题的一种可能解决方案。提供比较结果进行审查。

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