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A Method to Represent a Well in a Three-Dimensional Discrete Fracture Network Model

机译:一种在三维离散骨折网络模型中表示井的方法

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摘要

In discrete fracture network (DFN) modeling, fractures are randomly generated and placed in the model domain. The rock matrix is considered impermeable. Small fractures and isolated fractures are often ignored to reduce computational expense. As a result, the rock matrix between fractures could be large and intersections may not be found between a well introduced in the model and the hydraulically connected fracture networks (fracture backbones). To overcome this issue, this study developed a method to conceptualize a well in a three-dimensional (3D) DFN using two orthogonal rectangular fractures oriented along the well's axis. Six parameters were introduced to parameterize the well screen and skin zone, and to control the connectivity between the well and the fracture backbones. The two orthogonal fractures were discretized using a high-resolution mesh to improve the quality of flow and transport simulations around and along the well. The method was successfully implemented within dfnWorks 2.0 (Hyman et al. 2015) to incorporate a well in a 3D DFN and to track particles leaving an injection well and migrating to a pumping well. Verification of the method against MODFLOW/MODPATH found a perfect match in simulated hydraulic head and particle tracking. Using three examples, the study showed that the method ensured the connectivity between wells and fracture backbones, and honored the physical processes of flow and transport along and around wells in DFNs. Recommendations are given for estimating the values of the six introduced well parameters in a real-world case study.
机译:在离散断裂网络(DFN)建模中,裂缝是随机生成并放置在模型域中。岩石基质被认为是不可渗透的。小骨折和孤立的骨折通常被忽略以减少计算费用。结果,裂缝之间的岩石基质可以是大的,并且在模型中引入的良好良好和液压连接的骨折网络(断裂骨架)之间可能找不到交叉点。为了克服这个问题,本研究开发了一种使用沿着井轴定向的两个正交的矩形裂缝在三维(3D)DFN中概念化的方法。引入六个参数以参数化井筛和皮肤区,并控制井和骨折骨架之间的连接。使用高分辨率网分散化两个正交裂缝,以提高周围和沿着井的流量和运输模拟的质量。该方法在DFNWorks 2.0(Hyman等,2015)中成功实施,以在3D DFN中掺入孔并跟踪留下注射井的颗粒并迁移到泵送井。验证Modflow / ModPath的方法发现模拟液压头和粒子跟踪中的完美匹配。研究表明,该方法确保了井和骨折骨架之间的连接,并在DFN中追溯到井中的流动和运输物理过程。提出建议,以估计在真实案例研究中六个引入的井参数的值。

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  • 来源
    《Ground water》 |2021年第2期|281-286|共6页
  • 作者单位

    Desert Res Inst Div Hydrol Sci 755 E Flamingo Rd Las Vegas NV 89119 USA;

    Desert Res Inst Div Hydrol Sci 2215 Raggio Pkwy Reno NV 89512 USA;

    Desert Res Inst Div Hydrol Sci 2215 Raggio Pkwy Reno NV 89512 USA;

    Desert Res Inst Div Hydrol Sci 755 E Flamingo Rd Las Vegas NV 89119 USA;

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  • 正文语种 eng
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