首页> 外文期刊>American journal of applied sciences >NUMERICAL SIMULATION OF THE TRANSIENT FLOW IN NATURAL GAS TRANSMISSION LINES USING A COMPUTATIONAL FLUID DYNAMIC METHOD | Science Publications
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NUMERICAL SIMULATION OF THE TRANSIENT FLOW IN NATURAL GAS TRANSMISSION LINES USING A COMPUTATIONAL FLUID DYNAMIC METHOD | Science Publications

机译:用计算流体动力学方法数值模拟天然气传输线中的瞬态流动科学出版物

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> Until now, almost all tools that are used to analyze gas transportation networks are based on steady flow conditions. Some design problems can be solved by the assumption of a steady state. However, some circumstances force us to use transient analyses, which commonly include changes in customer demand, the failure of a compressor station or gas pipeline ruptures. In this study, the dynamic behavior of natural gas in transmission lines was investigated through Computational Fluid Dynamic (CFD) simulations. The system was modeled using the equations of continuity, motion (or momentum), energy and the ideal gas equation when considering turbulence effects in a two dimensional cylindrical lattice. The coupled partial differential equations were discretized based on the finite volume method. The accuracy of this method was verified by comparing the experimental field data with this approach, showing errors of approximately 4 to 4.5%, which shows the precision of this approach. Finally, an important case study was used as an application for the model and the best possible operating solution was proposed for a compressor station failure during peak demand times when the pipelines were operating at the maximum flow rate.
机译: >到目前为止,几乎所有用于分析天然气运输网络的工具都是基于稳定的流量条件。一些设计问题可以通过假设稳态来解决。但是,在某些情况下,我们不得不使用瞬态分析,通常包括客户需求的变化,压缩机站的故障或天然气管道破裂。在这项研究中,通过计算流体动力学(CFD)仿真研究了天然气在传输线中的动力学行为。当考虑二维圆柱晶格中的湍流效应时,使用连续性,运动(或动量),能量和理想气体方程式对系统进行建模。基于有限体积法离散了耦合的偏微分方程。通过将实验现场数据与该方法进行比较,验证了该方法的准确性,显示出大约4%至4.5%的误差,这表明了该方法的精度。最后,将一个重要的案例研究用作该模型的应用程序,并提出了在管道以最大流量运行时的高峰需求时间内出现压缩机站故障的最佳可行解决方案。

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