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The importance of a full 3D fluid dynamic analysis to evaluate the flow forces in a hydraulic directional proportional valve

机译:完整的3D流体动力学分析对评估液压方向比例阀中的流动力的重要性

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摘要

Purpose - The purpose of this paper is to present a full 3D Computational Fluid Dynamics (CFD) analysis of the flow field through hydraulic directional proportional valves, in order to accurately predict the flow forces acting on the spool and to overcome the limitations of two-dimensional (2D) and simplified three-dimensional (3D) models. Design/methodology/approach - A full 3D CAD representation is proposed as a general approach to reproduce the geometry of an existing valve in full detail; then, unstructured computational grids, which identify peculiar positions of the spool travel, are generated by means of the mesh generation tool Gambit. The computational grids are imported into the commercial CFD code Fluent, where the flow equations are solved assuming that the flow is steady and incompressible. To validate the proposed computational procedure, the predicted flow rates and flow forces are compared with the corresponding experimental data. Findings - The superposition between numerical and experimental curves demonstrates that the proposed full 3D numerical analysis is more effective than the simplified 3D flow model that was previously proposed by the same authors. Practical implications - The presented full 3D fluid dynamic analysis can be employed for the fluid-dynamic design optimization of the sliding spool and, more generally, of the internal profiles of the valve, with the objective of reducing the flow forces and thus the required control force. Originality/value - The paper proposes a new computational strategy that is capable of recognizing all 3D geometrical details of a hydraulic directional proportional valve and that provides a significant improvement with respect to 2D and partially 3D approaches.
机译:目的-本文的目的是通过液压方向比例阀对流场进行完整的3D计算流体动力学(CFD)分析,以准确预测作用在阀芯上的流力并克服两个阀芯的局限性。维(2D)和简化的三维(3D)模型。设计/方法/方法-提出了完整的3D CAD表示形式,作为重现现有阀门几何形状的通用方法;然后,借助网格生成工具Gambit生成识别卷轴行进的特殊位置的非结构化计算网格。计算网格被导入到商业CFD代码Fluent中,在此假设流动稳定且不可压缩的情况下求解流动方程。为了验证所提出的计算程序,将预测的流速和流动力与相应的实验数据进行比较。结果-数值曲线与实验曲线之间的叠加表明,所提出的完整3D数值分析比同一作者先前提出的简化3D流动模型更有效。实际意义-提出的完整3D流体动力学分析可用于滑动滑阀(更一般地说是阀内部轮廓)的流体动力学设计优化,目的是减少流动力,从而减少所需的控制力。原创性/价值-本文提出了一种新的计算策略,该策略能够识别液压方向比例阀的所有3D几何细节,并且相对于2D和部分3D方法提供了显着的改进。

著录项

  • 来源
    《Engineering Computations》 |2014年第5期|898-922|共25页
  • 作者单位

    Department of Mechanics,Mathematics and Management (DMMM) - Polytechnic University of Bari,Bari, Italy;

    Department of Mechanics,Mathematics and Management (DMMM) - Polytechnic University of Bari,Bari, Italy;

    Department of Mechanics,Mathematics and Management (DMMM) - Polytechnic University of Bari,Bari, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CFD; Flow forces; Hydraulic proportional directional valve;

    机译:差价合约流动力;液压比例换向阀;

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