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Analysis of Water Hammer with Different Closing Valve Laws on Transient Flow of Hydrogen-Natural Gas Mixture

机译:不同关闭阀规律的水锤对氢-天然气混合流瞬态流动的分析

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Water hammer on transient flow of hydrogen-natural gas mixture in a horizontal pipeline is analysed to determine the relationship between pressure waves and different modes of closing and opening of valves. Four types of laws applicable to closing valve, namely, instantaneous, linear, concave, and convex laws, are considered. These closure laws describe the speed variation of the hydrogen-natural gas mixture as the valve is closing. The numerical solution is obtained using the reduced order modelling technique. The results show that changes in the pressure wave profile and amplitude depend on the type of closing laws, valve closure times, and the number of polygonal segments in the closing function. The pressure wave profile varies from square to triangular and trapezoidal shape depending on the type of closing laws, while the amplitude of pressure waves reduces as the closing time is reduced and the numbers of polygonal segments are increased. The instantaneous and convex closing laws give rise to minimum and maximum pressure, respectively.
机译:分析了水平管道中氢气-天然气混合物瞬态流动的水锤现象,以确定压力波与阀门关闭和打开的不同方式之间的关系。考虑四种适用于关闭阀的定律,即瞬时定律,线性定律,凹定律和凸定律。这些关闭定律描述了阀门关闭时氢气与天然气混合物的速度变化。使用降阶建模技术可以获得数值解。结果表明,压力波曲线和振幅的变化取决于关闭规律的类型,阀门关闭时间以及关闭函数中多边形段的数量。压力波分布取决于闭合规律的类型,从正方形到三角形和梯形变化,而随着闭合时间的减少和多边形段数的增加,压力波的振幅也会减小。瞬时和凸形闭合规律分别导致最小和最大压力。

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