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首页> 外文期刊>Journal of applied mathematics >Numerical Investigation of Gas Mixture Length of Nitrogen Replacement in Large-Diameter Natural Gas Pipeline without Isolator
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Numerical Investigation of Gas Mixture Length of Nitrogen Replacement in Large-Diameter Natural Gas Pipeline without Isolator

机译:大口径天然气管道无隔离器置换氮气混合气长度的数值研究

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摘要

Nitrogen replacement is a key process for natural gas pipeline before it is put into operation. A computational fluid dynamic model coupled to a species-transportation model has been used to investigate the gas mixture length of nitrogen replacement in largediameter pipeline without isolator.Aseries of numerical simulations are performed over a range of conditions, including pipe length and diameter, inlet rate, and inclination angle of pipe. These affecting factors are analyzed in detail in terms of volume fraction of nitrogen, the maximum gas mixture length, and gas mixture length varied with time. Gas mixture length increases over time, and the maximum gas mixture length is present at outlet of pipe. Long and large-diameter pipe and fast speed of nitrogen lead to long length of mixed gas, while large inclination angle of pipe brings about short length. Several fitting formulas have been obtained, which can predict the maximum gas mixture length in gas pipelines.The used method of fitting formula is shown in the paper by examples.The results provide effective guidance for practical operation of nitrogen replacement.
机译:氮气置换是天然气管道投入运营之前的关键过程。结合物种迁移模型的计算流体动力学模型已被用于研究不使用隔离器的大口径管道中氮气置换的气体混合物长度,并在一系列条件下进行了一系列数值模拟,包括管道长度和直径,入口速率,以及管道的倾斜角度。根据氮气的体积分数,最大气体混合物长度和气体混合物长度随时间变化来详细分析这些影响因素。气体混合物长度随时间增加,并且最大气体混合物长度存在于管道出口。长而大直径的管道和快速的氮气导致混合气体的长度变长,而大的倾斜角度导致管道的长度变短。得到了几个拟合公式,可以预测燃气管道中的最大混合气长度。本文通过举例说明了所采用的拟合公式方法,这些结果为氮气置换的实际操作提供了有效的指导。

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