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首页> 外文期刊>Natural Hazards and Earth System Sciences Discussions >Climate-induced landslide reactivation at the edge of the Most Basin (Czech Republic) – progress towards better landslide prediction
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Climate-induced landslide reactivation at the edge of the Most Basin (Czech Republic) – progress towards better landslide prediction

机译:气候诱导的山体滑坡再激活在大多数盆地(捷克共和国)的边缘 - 更好的滑坡预测进展

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The catastrophic landslide at Eisenberg in North Bohemia was reactivated during January 2011. This study integrates a range of geoscientific evidence in order to constrain the spatial and temporal development of this reactivation. It has investigated long-term geodetic measurements to assess the morphological development of the site over the last two decades. There is evidence to suggest that, over this period, the site had been subjected to progressive deformation caused by the collapse of an old mine gallery. However, climatic data show that the reactivation itself was triggered by a dramatic rise in the water table induced by rapid snowmelt during a period of winter warming. Furthermore, geomorphological mapping has been used to characterise the morphology of the reactivated landslide and geophysical profiling has been used to analyse its internal structure. The results show that fissures are continuing to develop above the reactivated landslide scarp while highly saturated stiff-fissured claystones provide an incipient slide plane. The application of laser scanning has shown minimal evidence for ongoing landslide activity. It is, however, clear that future landslide events will occur here due to the favourable lithological, structural, and geotechnical conditions. Finally, we propose that future landslide activity at the site may be predicted by the height of water table as this defines theoretical pore pressure at the depth of the shear plane.
机译:北波希米亚的艾森伯格的灾难性滑坡于2011年1月重新启动。该研究融合了一系列地球科学证据,以限制这种重新激活的空间和时间发展。它调查了长期的大地测量测量,以评估过去二十年现场的形态学发展。有证据表明,在此期间,该网站受到旧矿山崩溃引起的渐进变形。然而,气候数据表明,重新激活本身是通过在冬季变暖期间通过快速雪光的水位表引起的巨大升高引发。此外,已经用于表征重新激活的滑坡的形态和地球物理分析的形态学用于分析其内部结构。结果表明,裂缝正在继续在重新激活的滑坡围巾上方产生,而高度饱和的抗裂粘土提供初始载玻片。激光扫描的应用显示了正在进行的滑坡活动的最小证据。然而,由于有利的岩性,结构和岩土工程,这里将在此处进行未来的滑坡事件。最后,我们提出可以通过水位的高度预测现场的未来滑坡活动,因为这在剪切平面深处定义了理论孔隙压力。

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