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Active fault zones and groundwater flow

机译:活动断层带和地下水流

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摘要

Boundary-element studies of an active strike-slip fault zone subject to fault-parallel loading of 6 MPa show tensile stress concentration in large areas around the fault-zone tips. In these areas, tensile stress exceeds typical in situ tensile strengths of rocks, resulting in the formation or reactivation of tensile fractures. These fractures curve toward the rips of the fault zone, and if interconnected they increase the rock permeability. Fault slip also increases the temporary permeability of the fault zone, by as much as many orders of a magnitude. Its effects on the surrounding groundwater flow, however, is normally small if the fault trends at a high angle to the groundwater flow but gradually increases as the angle between the flow and the fault decreases. When the trend of the fault zone and the groundwater flow coincide, the upstream part collects groundwater whereas the downstream part expels it. It follows that the yield of springs decreases in the upstream part, but increases in the downstream part. [References: 36]
机译:对活动走滑断层带进行6 MPa平行断层载荷的边界元研究表明,在断层带尖端附近的大区域内拉伸应力集中。在这些地区,拉伸应力超过了岩石的典型原位拉伸强度,导致了拉伸断裂的形成或重新活化。这些裂缝向断层带的边缘弯曲,如果相互连接,它们会增加岩石的渗透率。断层滑动还使断层带的临时渗透率增加了多达几个数量级。但是,如果断层相对于地下水流呈高角度趋势,则其对周围地下水流的影响通常很小,但随着断层与断层之间的夹角减小,其影响逐渐增大。当断层带的趋势与地下水流重合时,上游部分收集地下水,而下游部分排出地下水。因此,弹簧的屈服在上游部分减小,但是在下游部分增加。 [参考:36]

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