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3D contaminant transport by GFEM with hexahedral elements

机译:GFEM与六面体元素的3D污染物传输

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This work aims to apply the GFEM (Galerkin Finite Element Method), with hexahedral elements in concentration transport problems in a three-dimensional domain. Since these problems are highly convective in nature, a study of the GFEM with 8 and 27-node hexahedron is performed. For such, an application with an analytical solution is performed by examining the norms L_2 and L_∞ from the error in the numerical solution; especially considering the variation of the velocity components, and the geometry of the proposal. Finally, the application involved the transport of an ammonia concentration through a tubulation containing holes caused by ruptures, which allows for inward air flow; thus, in this study, the influence of the variation of hole quantities, the maximum drainage velocity, and the geometry employed are analyzed.
机译:这项工作旨在将GFEM(Galerkin有限元方法)与六面体元素一起应用于三维域中的浓度输运问题。由于这些问题本质上是高度对流的,因此对具有8节点和27节点六面体的GFEM进行了研究。为此,通过从数值解中的误差检查范数L_2和L_∞来执行具有解析解的应用程序;特别是考虑速度分量的变化以及提案的几何形状。最后,该应用涉及将氨浓度通过包含因破裂而引起的孔的输卵管输送,这允许空气向内流动。因此,在这项研究中,分析了井眼数量变化,最大排水速度和所采用的几何形状的影响。

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