...
首页> 外文期刊>Computational Geosciences >Upscaled discrete fracture matrix model (UDFM): an octree-refined continuum representation of fractured porous media
【24h】

Upscaled discrete fracture matrix model (UDFM): an octree-refined continuum representation of fractured porous media

机译:扩展离散裂缝矩阵模型(UDFM):裂缝多孔介质的八叉树精炼连续体表示

获取原文
获取原文并翻译 | 示例

摘要

We develop a computational geometry-based upscaling approach to accurately capture the dynamic processes occurring within and between subsurface fracture networks and the surrounding porous matrix named the Upscaled Discrete Fracture Matrix model (UDFM). Fracture attributes (orientations and apertures) are upscaled and combined with matrix attributes (permeability and porosity) into properties of an unstructured spatially variable Delaunay tetrahedral continuum mesh. The resolution of the mesh depends on proximity to the fractures to preserve the geometric and topological integrity of the underlying fracture network as well as increasing the accuracy of gradients in the dynamics between the fractures and matrix. The UDFM Delaunay mesh and its dual Voronoi mesh can be used in existing multiphysics simulators for flow, solute/heat mass transport, and geomechanics, thereby eliminating the need for the additional development of numerical methods to couple processes in fracture/matrix systems. The model is verified by comparing flow, transport, and coupled heat-mass flow simulations on the provided meshes against analytical and numerical benchmarks. We also provide an additional example to demonstrate the applicability of the UDFM to complex heteregenous fractured media. Overall, the UDFM is accurate in all of the cases considered here and presents an attractive alternative to other modeling strategies that require novel numerical methods or multi-dimensional meshes.
机译:我们开发了一种基于计算几何的放大方法,以准确捕获地下裂缝网络与周围的多孔基质(称为“扩展离散裂缝矩阵模型”(UDFM))内部和之间发生的动力学过程。断裂属性(方向和孔径)按比例放大,并与矩阵属性(渗透率和孔隙率)组合为非结构化空间可变Delaunay四面体连续体网格的属性。网格的分辨率取决于与裂缝的接近程度,以保留下层裂缝网络的几何和拓扑完整性,并提高裂缝和基体之间动力学梯度的准确性。 UDFM Delaunay网格及其双Voronoi网格可用于现有的多物理场模拟器中,用于流动,溶质/热质传输和地质力学,从而无需额外开发数值方法来耦合裂缝/基质系统中的过程。通过比较所提供的网格上的流动,传输和耦合的热质流模拟与分析基准和数值基准,可以验证该模型。我们还提供了另一个示例来证明UDFM在复杂的非均质裂缝性介质中的适用性。总体而言,UDFM在这里考虑的所有情况下都是准确的,并且是需要新颖的数值方法或多维网格的其他建模策略的有吸引力的替代方案。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号