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The Effect of Water Hammer on Pressure Oscillation of Hydrogen Natural Gas Transient Flow

机译:水锤对氢气天然气瞬态流动压力振荡的影响

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The unexpected closing of a control valve or pumping, which can be planned or accidental could lead to pressure oscillation commonly known as water hammer. Pressure waves oscillation in the fluid flow interaction leads to unsteady state phenomenon. Numerical computation on transient flow model of hydrogen natural gas mixture (HCNG) in a pipeline where different types of valves are considered for effective delivery and safety. Reduced order modeling (ROM) technique is employed in the transient analysis of high pressured HCNG in a short pipe. The flow is governed by a system of Euler equations that are discretized using the implicit Steger-Warming flux vector splitting method (FSM). Eigenmode analysis and the subsequent construction of ROM use only a few dominant flow eigenmodes. The boundary conditions are imposed using the closure law at the upstream and downstream of the pipeline. The effect of closure function is analyzed and the results are presented on different mass ratios and HCNG flow parameters. The transient pressure oscillations of HCNG at different closure functions are compared so as to test the best type of valve for HCNG transportation. The highest and lowest value of transient pressure wave occurs when instantaneous and convex closure law is considered, respectively.
机译:控制阀或泵送的意外关闭,可以计划或偶然的可能导致通常称为水锤的压力振荡。流体流动相互作用中的压力波振荡导致不稳定的状态现象。不同类型阀门的氢气天然气混合物(HCNG)瞬态流动模型的数值计算被认为是有效的递送和安全性。减少阶阶建模(ROM)技术在短管中的高压HCNG瞬态分析中使用。该流动由使用隐式标记升温通量矢量分裂方法(FSM)离散化的欧拉方程系统来控制。特征模型分析和随后的ROM构造仅使用一些主要的流量特征模。使用在管道上游和下游的闭环法施加边界条件。分析闭合功能的效果,结果显示在不同的质量比和HCNG流动参数上。比较不同闭合功能的HCNG瞬态压力振荡,以测试最佳阀门用于HCNG运输。当考虑瞬时和凸闭合法时,发生瞬态压力波的最高和最低值。

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