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Hydrologically induced slope deformations detected by GPS and clinometric surveys in the Cansiglio Plateau, southern Alps

机译:通过GPS和倾斜测量法在阿尔卑斯山南部坎西里奥高原发现的水文诱发的斜坡变形

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摘要

Changes in groundwater or surface water level may cause observable deformation of the drainage basins in different ways. We describe an active slope deformation monitored with GPS and tiltmeter stations in a karstic limestone plateau in southeastern Alps (Cansiglio Plateau). The observed transient GPS deformation clearly correlates with the rainfall. Both GPS and tiltmeter equipments react instantly to heavy rains displaying abrupt offsets, but with different time constants, demonstrating the response to different catchment volumes. The GPS movement is mostly confined in the horizontal plane (SSW direction) showing a systematic tendency to rebound in the weeks following the rain. Four GPS stations concur to define a coherent deformation pattern of a wide area (12 ×5km2), concerning the whole southeastern slope of the plateau. The plateau expands and rebounds radially after rain by an amount up to a few centimeters and causing only small vertical deformation. The effect is largest where karstic features are mostly developed, at the margin of the plateau where a thick succession of Cretaceous peritidal carbonates faces the Venetian lowland. Acouple of tiltmeters installed in a cave at the top of the plateau, detect a much faster deformation, that has the tendency to rebound in less than 6h. The correlation to rainfall is less straightforward, and shows a more complex behavior during rainy weather. The different responses demonstrate a fast hydrologic flow in the more permeable epikarst for the tiltmeters, drained by open fractures and fissures in the neighborhood of the cave, and a rapid tensile dislocation of the bedrock measured at the GPS stations that affect the whole slope of the mountain. In the days following the rain, both tiltmeter and GPS data show a tendency to retrieve the displacement which is consistent with the phreatic discharge curve. We propose that hydrologically active fractures recharged by rainfall are the most likely features capable to induce the observed strain variations.
机译:地下水或地表水位的变化可能以不同的方式引起流域的可观察到的变形。我们描述了在东南阿尔卑斯山(Cansiglio高原)的一个岩溶石灰岩高原上用GPS和倾斜仪站监测的主动斜坡变形。观测到的瞬时GPS变形与降雨明显相关。 GPS和倾斜仪设备对暴雨都会立即做出反应,显示出突然的偏移,但是具有不同的时间常数,这表明了对不同集水量的响应。 GPS运动主要局限在水平面(SSW方向)上,显示在下雨后的几周内系统地反弹。四个GPS站同意定义一个涉及高原东南坡度的大面积(12×5km2)的连贯变形模式。高原在雨后会径向扩张和反弹,直至几厘米,并且只会引起很小的垂直变形。在大多数发育岩溶特征的地区,这种影响是最大的,在高原边缘,一系排厚厚的白垩纪周生碳酸盐岩面对威尼斯低地。安装在高原顶部洞穴中的一对倾斜仪检测到的变形要快得多,在不到6小时的时间内就会反弹。与降雨的相关性不太直接,并且在阴雨天气表现出更复杂的行为。不同的响应表明,倾斜仪的渗透性较高的岩溶中有快速的水文流动,由于洞穴附近的开放性裂缝和裂隙而排干,在GPS站测得的基岩快速拉伸脱位影响了整个倾斜度。山。在下雨后的几天里,倾角仪和GPS数据都显示出一种恢复位移的趋势,该位移与潜水排放曲线一致。我们提出,降雨补给的水文活动裂缝是最有可能引起观测到的应变变化的特征。

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