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Engineering-related slope failure in permafrost regions of the Qinghai-Tibet Plateau

机译:青藏高原多年冻土地区工程引起的边坡破坏

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Thaw slumping existing on two slopes in permafrost region of the Qinghai-Tibet Plateau is studied with their geological features, deformations and ground temperature in this paper. The failure shows as collapse and slide of active layer along the massive ground-ice surface. The field-monitored data show that the retrogressively extending area, soil-body sliding velocity and the water content of the soils in the failed area strikingly change with the air temperature and slope facing aspect. On the south-facing slope, the values of all of these items are higher than that on the north-facing slope. The mean annual ground temperature in the failed area on the south-facing slope is evidently higher than that in the undisturbed natural ground and that in the north-facing slope. In addition, the input of heat into the permafrost below the sliding mass on the south-facing slope is more than the output. Therefore the permafrost in the slope processes degradation when landslide occurs. The genesis of this kind of slope failure is closely related to ice-rich frozen soils and activities of engineering cut. Based on static balance analysis, the stability estimating method for such landslide is presented considering the seepage of ice-melting ground water in the paper. At last, the engineering measures of preventing thaw slumping are proposed too.
机译:本文研究了青藏高原多年冻土区两个斜坡上的融化塌陷及其地质特征,变形和地温。破坏表现为活动层沿着大量的地面冰表面坍塌和滑动。现场监测的数据表明,该区域的倒退延伸面积,土体滑动速度和土壤含水量随着气温和坡向的变化而显着变化。在朝南的斜坡上,所有这些项目的值都比朝北的斜坡上的值高。朝南坡的破坏区域的年平均地面温度明显高于未受干扰的自然地面和朝北坡的平均年温度。此外,向南坡上滑动块下方的永久冻土的热量输入要大于热量。因此,当发生滑坡时,斜坡上的多年冻土会退化。这种边坡破坏的成因与富含冰的冻土和工程切口的活动密切相关。基于静平衡分析,提出了考虑冰融化地下水渗流的滑坡稳定性评价方法。最后,提出了防止融化塌陷的工程措施。

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