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首页> 外文期刊>Journal of Hydrology >Flow-bearing structures of fractured rocks: Insights from hydraulic property scalings revealed by a pumping test
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Flow-bearing structures of fractured rocks: Insights from hydraulic property scalings revealed by a pumping test

机译:裂隙岩石的含流结构:通过抽水试验揭示的水力特性缩放的见解

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A long duration pumping test conducted over 151 days in a fractured sandstone and shale formation displays a nonstandard drawdown response and anomalous pressure diffusion, which cannot be properly interpreted using existing frameworks (e.g., homogeneous, double porosity, boundary conditions, and fractal models). An alternative framework with simple geometry and more complex hydraulic properties is thus proposed to interpret such kind of drawdown responses. The analytical development allows first to demonstrate all scaling relations in this interpretation framework. Then, and most importantly, the multi-scale hydraulic test provides consistent scalings of transmissivity, T, to storativity, S, over distances ranging from 83 to 383 m in a faulted area. Drawdown analysis in several monitoring wells shows persistent decrease of transmissivity in highly channelized fracture flow structures. In one structure, the cubic dependency of transmissivity to storativity identifies a welldefined fault and also demonstrates the validity of Poiseuille flow at a scale rarely investigated. In the other structure, the linear dependency of transmissivity to storativity indicates that the flow-bearing structure is the surrounding fracture network. Well-designed pumping tests combined with scaling analysis driven by geological evidence thus provide essential information on flow-bearing structures for site characterization and modeling tasks. At least for moderate to low permeable fractured rocks, the scaling of transmissivity to storativity appears to be more informative than any separate interpretation of hydraulic property scaling exponents.
机译:在裂隙砂岩和页岩地层中进行了为期 151 天的长期泵送测试,显示出非标准的回撤响应和异常的压力扩散,使用现有框架(例如,均匀、双孔隙度、边界条件和分形模型)无法正确解释。因此,提出了一种具有简单几何形状和更复杂水力特性的替代框架来解释这种回撤响应。分析开发允许首先演示该解释框架中的所有缩放关系。然后,最重要的是,在断层区域的 83 至 383 m 距离内,多尺度水力测试提供了从透射率 T 到存储率 S 的一致比例。对几口监测井的回撤分析表明,在高度通道化的裂缝流结构中,透射率持续下降。在一个结构中,透射率对存储率的立方依赖性识别了一个明确定义的断层,并且还证明了泊塞耶流在很少研究的尺度上的有效性。在另一种结构中,透射率与存储率的线性依赖性表明,承流结构是周围的裂缝网络。因此,精心设计的泵送测试与地质证据驱动的结垢分析相结合,为现场表征和建模任务提供了有关流动结构的基本信息。至少对于中低渗透性裂隙岩石,透射率到储性比例似乎比任何单独的水力特性比例指数解释都更具信息性。

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