首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Does In Situ State of Stress Affect Fracture Flow in Crystalline Settings?
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Does In Situ State of Stress Affect Fracture Flow in Crystalline Settings?

机译:原位应力状态是否会影响晶体环境中的骨折流动?

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Whether in situ state of stress affects fracture flow in approximately 1-km-deep crystalline rock setting is investigated by analyzing a unique fracture database, consisting of 193,698 discrete fractures out of which 6,223 were detected as flowing during steady state pumping. The database is based on fracture data acquired in deep surface-based holes drilled during the site investigations for underground high-level spent nuclear fuel repositories in Finland and Sweden. By computing effective normal and shear stress magnitudes on the planes of all identified fractures, we show that the probability for critically stressed fractures to be flowing is low and low normal stress values provide a slightly better indicator for fracture flow. Our results further show that at shallow settings, fracture criticality is driven by low normal stresses as the distributions of shear stress values for flowing and nonflowing fractures are very similar. The results also show that the effect of in situ stress on fracture flow is relatively low and in situ stress or its associated derivatives (shear and normal stresses) cannot be used directly in a deterministic manner for the prediction of fracture flow. As a consequence, if hydromechanical concepts are invoked for modeling fracture flow, a probabilistic approach is needed. In such an approach, we emphasize the role of low normal stresses over the concept of critically stressed fractures, as the use of normal stresses does not require the selection of a certain friction coefficient value, defining the boundary between critical and noncritical fractures.
机译:通过分析独特的骨折数据库,研究了由193,698个离散骨折组成的独特骨折数据库来研究大约1公里深的晶岩设定的骨折流动的裂缝流动。该数据库基于在芬兰和瑞典的地下高水平废核燃料库的现场调查期间钻取的深层表面孔中获取的裂缝数据。通过计算所有识别的裂缝的平面上的有效正常和剪切应力大小,我们表明待流动的危险骨折的概率是低,正常应力值低,为断裂流提供稍微更好的指示。我们的结果进一步表明,在浅设置下,由于流动和非流动性裂缝的剪切应力值的分布非常相似,断裂临界性受到低正常应力的驱动。结果还表明,原位应力对断裂流的影响是相对较低的,并且原位应力或其相关的衍生物(剪切和正常应力)不能直接以确定裂缝流预测的确定方式。结果,如果调用流体力学概念以进行建模裂缝流,则需要一种概率的方法。在这种方法中,我们强调低正常应力对统治性压力裂缝的概念的作用,因为正常应力的使用不需要选择某个摩擦系数值,限定临界和非临界骨折之间的边界。

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