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Modeling of movement-induced and flow-induced fluid forces in fast switching valves

机译:快速开关阀中的运动引起和流体引起的流体力建模

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Fast switching fluid power valves set strict requirements on performance, size and energy efficiency and simulation models are therefore needed to obtain good designs of such components. The valve moving member is subject to fluid forces depending on the valve flow rate and movement of the valve member itself. These fluid forces may be accurately simulated using Computational Fluid Dynamics (CFD) analysis, but such models suffer from being computationally expensive and is not suited for optimization routines. In this paper, a computationally inexpensive method for modeling the fluid forces is proposed, which includes both the flow-induced fluid forces and the movement-induced fluid forces resulting from movement of the valve moving member. The movement-induced fluid force model is based on a known solution to the linearized Navier-Stokes equations. A method for accurately simulating the flow-pressure relationship of a switching valve based on CFD results is presented along with the fluid force model, to constitute a complete valve fluid model. The parameters needed for the proposed model are determined based on CFD analyses, and the process of finding these parameters are described based on a reference valve design. Simulated results of the total fluid force are presented showing the movement-induced fluid force to be significant for a reference application. The model form established is useful for valve designers during development and for accurate operation simulation.
机译:快速开关流体动力阀对性能,尺寸和能效提出了严格的要求,因此需要使用仿真模型来获得此类组件的良好设计。阀移动构件受到取决于阀流速和阀构件本身的运动的流体力。可以使用计算流体动力学(CFD)分析来精确地模拟这些流体力,但是这些模型的计算量很大,不适合优化例程。在本文中,提出了一种用于建模流体力的计算上不昂贵的方法,该方法既包括流动引起的流体力,又包括由于阀移动构件的运动而产生的运动引起的流体力。运动引起的流体力模型基于线性Navier-Stokes方程的已知解。结合流体力学模型,提出了一种基于CFD结果准确模拟切换阀流量-压力关系的方法,以构成完整的阀体流体模型。基于CFD分析确定建议模型所需的参数,并基于参考阀设计描述查找这些参数的过程。给出了总流体力的模拟结果,表明运动引起的流体力对于参考应用很重要。建立的模型表格对于阀门设计人员在开发过程中以及进行精确的操作仿真很有用。

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