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Influence of flashboard location on flow resistance properties and internal features of gate valve under the variable condition

机译:可变条件下闸板位置对闸板流阻特性和内部特性的影响

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This article is intended to elaborate different inlet velocities that respectively are 13 m/s,15 m/s and 17 m/s to influence flow resistance characteristics and the internal flow characteristics of gate valve in the medium-low pressure gas transmission. This paper presents the CFD analysis of flow resistance characteristics and the internal flow characteristics of gate valve in a gate valve with different inlet velocity. Gate valves under different inlet velocity have eight relative opening degrees that respectively are 1/8, 2/8, 3/8, 4/8, 5/8, 6/8, 7/8 and 1. For every relative opening degree of gate valve structure, the systematic CFD simulations of flow resistance, pressure fluid, velocity fluid, velocity streamline and pressure coefficient characteristics. The study mainly analyses the pressure field distribution, velocity distribution, the velocity streamline distribution when the relative opening degree is 1/8, 2/8 and I. Experimental measurements are also conducted for flow resistance characteristics and then compared with simulated flow resistance results. The CFD simulated flow resistance results show a good agreement with that of experimental flow resistance based on the Reynolds Stress Model (RSM) turbulence model provided by fluent software. Through analysis of flow resistance properties and internal flow characteristics, we concluded that it is not stable before the relative opening degree 2/8 that the valve flow resistance characteristics and internal flow characteristics, which need to be optimized; however, the valve flow resistance characteristics and flow characteristics gradually can be gradually stabilized after the relative opening degree 2/8, and does not have the characteristics of regulating valve. In the process of gas transmission, pressure energy loss mainly occurs in the valve core. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文旨在阐述不同的入口速度,分别为13 m / s,15 m / s和17 m / s,以影响中低压气体传输中的流阻特性和闸阀的内部流动特性。本文介绍了在不同入口速度的闸阀中,闸阀的流阻特性和内部流量特性的CFD分析。在不同入口速度下的闸阀具有八个相对开度,分别为1 / 8、2 / 8、3 / 8、4 / 8、5 / 8、6 / 8、7 / 8和1。闸阀结构,流阻,压力流​​体,速度流体,速度流线和压力系数特性的系统CFD模拟。该研究主要分析了相对开度为1 / 8、2 / 8和I时的压力场分布,速度分布,速度流线分布。还对流阻特性进行了实验测量,然后与模拟流阻结果进行了比较。 CFD模拟流阻结果与基于Fluent软件提供的雷诺应力模型(RSM)湍流模型的实验流阻具有很好的一致性。通过对流阻特性和内部流动特性的分析,我们得出结论,在相对开度2/8之前,需要优化的阀门流阻特性和内部流动特性是不稳定的。但是,在相对开度为2/8之后,阀的流动阻力特性和流动特性能够逐渐稳定,并且不具有调节阀的特性。在输气过程中,压力能量损失主要发生在阀芯上。 (C)2016 Elsevier B.V.保留所有权利。

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