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Comparison of the response to geometrical complexity of methods for unstationary simulations in discrete fracture networks with conforming, polygonal, and non-matching grids

机译:不同抗折断网格中的不匹配网格中的不匹配网格中的不匹配网的几何复杂性对几何复杂性的比较

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The aim of this study is to compare numerical methods for the simulation of single-phase flow and transport in fractured media, described here by means of the discrete fracture network (DFN) model. A Darcy problem is solved to compute the advective field, then used in a subsequent time-dependent transport-diffusion-reaction problem. The numerical schemes are benchmarked in terms of flexibility in handling geometrical complexity, mass conservation, and stability issues for advection-dominated flow regimes. To this end, two benchmark cases, along with an additional one from a previous work, have been specifically designed and are here proposed and investigated, representing some of the most critical issues encountered in DFN simulations.
机译:本研究的目的是比较借助于离散的裂缝网络(DFN)模型描述的裂缝介质中的单相流量和运输的数值方法。解决了达西问题以计算平面领域,然后在随后的时间依赖的运输扩散反应问题中使用。数值方案在处理几何复杂性,大规模保护和稳定性问题方面是用于平流主导的流动制度的灵活性的基准测试。为此,两个基准案例以及来自以前的工作的额外的基准情况已经专门设计并在此提出并调查,代表了DFN模拟中遇到的一些最关键的问题。

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