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A computational modelling of natural gas flow in looped network: Effect of upstream hydrogen injection on the structural integrity of gas pipelines

机译:环路网络中天然气流量的计算建模:上游氢气喷射对气体管道结构完整性的影响

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In this paper a numerical simulation of transient hydrogen-natural gas mixture flow in a looped network is studied based on a mathematical model that considers the variation of the compressibility factor of the gas mixture with pressure under isothermal gas flow. The transient analysis is preceded by a steady state modelling. Moreover, the distribution of gas flow rates in pipes and the pressure values in nodes are determined in the steady state and served as initial conditions for the time dependent study. The transient regime is created by a periodic evolution of consumers demand versus time. The numerical computation is performed using the finite element method based software, COMSOL Multiphysics, and examined on a single gas transmission pipe as well as on a looped gas network system. Due to periodic changes of gas demands over a day, the pressure undergoes periodic oscillations around its mean value. The numerical computation is also investigated to focus on the effect of hydrogen injection, with a defined mass ratio, into the natural gas flow on the gas mixture behaviour. The impact of hydrogen gas on the integrity of the pipe material is followed up through comparison between the allowable stress and the resulted circumferential stress. It is observed that overpressure values in transient regime are proportional to the hydrogen mass ratio in the gas mixture. Such overpressure raises the circumferential stress and thereafter the internal load applied to the pipeline wall increases. Both steady and transient results numerically obtained were compared with the experimental results available in the literature.
机译:本文基于在等温气体流动下,研究了基于数学模型的数学模型研究了环路网络中的瞬态氢气 - 天然气混合物流动的数值模拟。瞬态分析前面是稳态建模。此外,在管道中的气流速率分布和节点中的压力值在稳态确定,并且在依赖性研究中作为初始条件。瞬态制度是由消费者需求与时间的周期性演变产生的。使用基于有限元方法的软件,COMSOL多体学和在单个燃气传输管道以及环路气体网络系统上检查数值计算。由于每天的气体需求的周期性变化,压力在其平均值周围经历周期性振荡。还研究了数值计算以专注于氢注射的效果,具有限定的质量比在气体混合物行为上的天然气流中。通过比较允许应力和所得到的圆周应力之间的比较,随后采用氢气对管材完整性的影响。观察到瞬态区域中的过压值与气体混合物中的氢质量比成比例。这种超压提高了圆周应力,然后施加到管道壁的内部负荷增加。将数值和瞬态的结果与文献中可获得的实验结果进行比较。

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