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Ground-penetrating radar investigation inside a karstified limestone reservoir

机译:岩溶石灰岩储层内探地雷达调查

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摘要

In this paper, we present ground-penetrating radar (GPR) investigations performed along a 3.7 km long tunnel located inside a lower Cretaceous limestone massif of south-eastern France. This fractured massif is mainly characterized by water circulation and karstic structures. This kind of geological formation contains a large part of the fresh underground water resources of the world and is also considered as an analogue of Middle East oil reservoirs. Since tunnel walls are covered by thick reinforced concrete, direct geological observations are impossible. After some preliminary tests, the entire tunnel was investigated using 250 MHz shielded antennas. Data are generally of very good quality, with reflection time up to 400 ns (down to 18 m under the tunnel floor with a velocity of 9 cms). We correlate the GPR signal along the tunnel with surface geological observations: the upper part of the investigated formation (Bedoulian) displays prominent stratigraphic reflectors while the lower part (Barremian) does not. Numerous diffractions are observed in both formations and can be related to karstic features. These investigations allow to better constrain the geological context along the tunnel, necessary for future hydrogeological studies. We conclude that this tunnel offers a unique opportunity of performing GPR measurements within a karstified limestone massif.
机译:在本文中,我们介绍了沿法国东南部下白垩统石灰岩地块内3.7公里长的隧道进行的探地雷达(GPR)研究。断层地块的主要特征是水循环和岩溶结构。这种地质构造包含了世界上大量的新鲜地下水资源,也被认为是中东石油储层的类似物。由于隧道的墙壁被厚厚的钢筋混凝土覆盖,因此不可能进行直接的地质观测。经过一些初步测试后,使用250 MHz屏蔽天线对整个隧道进行了研究。数据通常质量非常好,反射时间可达400 ns(在隧道底下以18 cm的速度下降至18 m)。我们将沿隧道的GPR信号与地面地质观测结果相关联:被调查地层的上部(Bedoulian)显示出显着的地层反射体,而下部(Barremian)则没有。在两个地层中均观察到许多衍射,并且可能与岩溶特征有关。这些研究可以更好地限制沿隧道的地质环境,这是未来水文地质研究所必需的。我们得出的结论是,该隧道为在石灰岩岩溶地块内进行GPR测量提供了独特的机会。

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