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Evaluation of steady flow torques and pressure losses in a rotary flow control valve by means of computational fluid dynamics

机译:通过计算流体动力学评估旋转流量控制阀中的稳定流量扭矩和压力损失

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In this paper, a novel design of a rotary hydraulic flow control valve has been presented for high flow rate fluid power systems. High flow rates in these systems account for substantial flow forces acting on the throttling elements of the valves and cause the application of mechanically sophisticated multi-staged servo valves for flow regulation. The suggested design enables utilisation of single-stage valves in power hydraulics operating at high flow rates regimes. A spool driver and auxiliary mechanisms of the proposed valve design were discussed and selection criteria were suggested. Analytical expressions for metering characteristics as well as steady flow torques have been derived. Computational fluid dynamics (CFD) analysis of steady state flow regimes was conducted to evaluate the hydraulic behaviour of the proposed valve. This study represents a special case of an independent metering concept applied to the design of power hydraulic systems with direct proportional valve control operating at flow rates above 150 litres per minute. The result gained using parametric CFD simulations predicted the induced torque and the pressure drops due to a steady flow. Magnitudes of these values prove that by minimising the number of spool's mobile metering surfaces it is possible to reduce the flow-generated forces in the new generation of hydraulic valves proposed in this study. Calculation of the flow jet angles was analytically verified by measuring the deflection of the velocity vector using flow velocity field distribution, obtained during visualisation of the results of CFD simulations. The derived calculation formulas can predict metering characteristics, values of steady flow torques and jet angles for the specified design and geometry of the suggested valve. The proposed novel structure of the flow control valve promises to attain improved controllability, reliability and efficiency of the hydraulic control units of heavy mobile machinery operating at high flow rates regimes. (C) 2017 Elsevier Inc. All rights reserved.
机译:在本文中,提出了一种用于高流量流体动力系统的新型旋转液压流量控制阀设计。这些系统中的高流速导致作用在阀门节流元件上的大量流动力,并导致应用机械复杂的多级伺服阀进行流量调节。建议的设计可以在高流量状态下的动力液压系统中使用单级阀。讨论了提出的阀设计的阀芯驱动器和辅助机构,并提出了选择标准。得出了计量特性以及稳定流量转矩的解析表达式。进行了稳态流态的计算流体动力学(CFD)分析,以评估所提出阀门的液压性能。这项研究代表了一种独立计量概念的特殊情况,该概念应用于具有直接比例阀控制的动力液压系统的设计,并以每分钟150升以上的流量运行。使用参数CFD模拟获得的结果预测了由于稳定流量而引起的转矩和压降。这些值的数量证明,通过最小化阀芯的可移动计量表面的数量,可以减少本研究中提出的新一代液压阀中的流动产生力。通过使用CFD模拟结果的可视化过程中获得的流速场分布来测量速度矢量的挠度,从而对射流角的计算进行了分析验证。推导的计算公式可以预测指定阀门的指定设计和几何形状的计量特性,稳定流量扭矩值和喷射角。所提出的流量控制阀的新颖结构有望实现在高流量状态下运行的重型移动机械的液压控制单元的改进的可控制性,可靠性和效率。 (C)2017 Elsevier Inc.保留所有权利。

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