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Correlation between groundwater flow and deformation in the fractured carbonate Gran Sasso aquifer (INFN underground laboratories, central Italy)

机译:碳酸盐岩断层中的地下水流量与变形之间的相关性(意大利中部INFN地下实验室)

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摘要

The Gran Sasso massif is a carbonate fractured aquifer with a spring discharge of more than 18 m~3 s~(-1). The water table has been partially drained by two motorway tunnels and an underground laboratory (UL), located into the core aquifer. Karst features have limited role below the water table, where groundwater flow is mainly regulated by the fracture network. Two paired laser extensometers (BA and BC) recorded ground deformation in the UL. Changes in deformation correlate with the seasonal recharge/discharge cycle of groundwater flow and its long-term changes. Hydrostatic conditions prevail during the recharge phases because of the low permeability of local fractures, favoring compression, and hydraulic gradient increase above the UL. Fast groundwater flow through the high-permeability fault outcropping in the UL can enhance local dilatation for short periods. Spring discharge during exhaustion periods is fed by the low-permeability fracture network, fostering hydrodynamic conditions by hydraulic gradient decrease, diminishing compression and consequently favoring dilatation. Independent support to this conceptual model comes from local tests and a numerical model which highlights the hydromechanical strain effects induced by the hydrological cycle on the jointed rock mass along BA and the role of the hydraulic gradient on the rock mass deformation.
机译:格兰萨索地块是碳酸盐岩裂隙含水层,其泉水排放量大于18 m〜3 s〜(-1)。地下水已被位于核心含水层中的两条高速公路隧道和一个地下实验室(UL)排干了一部分。地下水位以下的岩溶特征作用有限,那里的地下水流量主要由裂缝网络调节。两对激光引伸计(BA和BC)记录了UL中的地面变形。变形的变化与地下水流量的季节性补给/排放周期及其长期变化有关。由于局部裂缝的渗透率低,有利于压缩,水力梯度在UL之上增加,因此在补给阶段普遍存在静水条件。通过UL中高渗透性断层露头的快速地下水流可以在短时间内增强局部膨胀。疲惫期的春季排泄物是由低渗透性裂缝网络提供的,通过降低水力梯度,减少压缩并因此有利于扩张来促进水动力条件。对这一概念模型的独立支持来自于局部测试和一个数值模型,该模型强调了水文循环沿BA对节理岩体产生的水力应变效应以及水力梯度对岩体变形的作用。

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