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Terrain uplift due to natural hydrologic overpressure in karstic conduits

机译:岩溶导管中的自然水文超压引起的地形隆升

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摘要

Water supply from karst sources is a worldwide natural resource and the exploitation is tied to the knowledge of the positions of the hydrologic channels. We show that surface deformation induced by flood events in karst conduits is observable, and consists in uplift and outward movement from the hydraulic channel. Precipitation events produce the natural occurrence of subsurface hydraulic overpressure up to 1 MPa. Numerical modeling shows that the stresses are so strong to uplift and dislocate the surface by several mm and induce tilts in the order of microradians. The naturally induced deformation is compatible with a transient internal pressure loading of a channel. The results can be used to find new channels with dense GNSS networks. Sea water incursion and channels accessed for tourism could be monitored. Seismicity has been shown to have a seasonal variation in some areas, which could be explained by the subsurface stresses induced by the natural subsurface overpressure. The pressure induced deformation is expected to be observed in all karstic systems worldwide.
机译:岩溶水源的供水是世界范围内的自然资源,其开采与水文渠道位置的知识有关。我们表明,由岩溶导管中的洪水事件引起的表面变形是可观察到的,并且主要是从水力通道向上运动和向外运动。降水事件自然会产生地下水力超压,最高可达1 MPa。数值模型表明,应力是如此之大,以至于使表面隆起并使表面移位数毫米,并引起微弧度的倾斜。自然诱发的变形与通道的瞬时内部压力负载兼容。结果可用于查找具有密集GNSS网络的新频道。可以监测海水的入侵和通往旅游业的渠道。某些地区的地震活动已显示出季节变化,这可以用自然地下超压引起的地下应力来解释。预计在全世界所有岩溶系统中都会观察到压力引起的变形。

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