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Transient flow in pipelines of high-pressure hydrogen-natural gas mixtures

机译:高压氢天然气混合物管道中的瞬态流动

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The purpose of this study is the numerical modeling of high-pressure transient flow of hydrogen-natural gas mixtures in rigid pipelines. The governing equations for such flows are two coupled, non-linear, hyperbolic, partial differential equations. The fluid pressure and velocity are considered as two principal dependent variables. The fluid is a homogeneous hydrogen-natural gas mixture for which the density is defined by an expression averaging the two gas densities where a polytropic process is admitted for the two components. The hydrogen-mixture mass ratio (or quality), assumed to be constant, is used in the mathematical formulation, instead of the void fraction which varies with pressure. The problem has been solved by the non-linear method of characteristics and the finite difference conservative method. To verify their validity, the computed results of the two numerical methods are compared for different values of the quality. The occurrence of pressure oscillations in hydrogen-natural gas mixture pipelines was studied as a result of the compression wave created by a rapid closure of downstream shut-off valve.
机译:本研究的目的是对刚性管道中氢气-天然气混合物的高压瞬态流动进行数值模拟。这种流动的控制方程是两个耦合的非线性双曲偏微分方程。流体压力和速度被认为是两个主要因变量。流体是均质的氢气-天然气混合物,其密度由两个气体密度的平均表达式表示,其中允许对这两个成分进行多方过程。在数学公式中使用假定为恒定的氢混合物质量比(或质量),而不是随压力变化的空隙率。该问题已通过非线性特征方法和有限差分保守方法得以解决。为了验证其有效性,比较了两种数值方法的计算结果以获取不同的质量值。研究了氢气-天然气混合物管道中压力振荡的发生,这是由于下游截止阀迅速关闭而产生的压缩波的结果。

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