首页> 外文期刊>Engineering Geology >Pore-pressure generation and fluidization in a loess landslide triggered by the 1920 Haiyuan earthquake, China: A case study
【24h】

Pore-pressure generation and fluidization in a loess landslide triggered by the 1920 Haiyuan earthquake, China: A case study

机译:1920年海原地震在黄土滑坡中孔隙压力的产生和流化作用:一个案例研究

获取原文
获取原文并翻译 | 示例
       

摘要

During the 1920 Haiyuan earthquake, numerous catastrophic landslides were triggered in the loess area in Northwest China. We investigated in detail a large example of these landslides, referred to as Dangjiacha landslide in this paper. This landslide originated from a slope of about 20°, and the displaced soil mass traveled about 3200 m, damming a valley. We performed a field survey and found that standing water existed in the landslide area and the loess had high porosity. We infer that it was the liquefaction of the water-saturated loess layer rather than the suspension of silt in the pore-air in the loess that caused the great mobility of this landslide. To test this inference, we performed undrained triaxial compression and ring shear tests on loess samples to examine the shear behavior of loess saturated by either air or water. The test results showed that the water-saturated loess soil was highly susceptible to flow liquefaction failure. Fast shear tests on naturally air-dried loess samples revealed that the generated pore-air pressure was small under the "undrained condition" and no significant reduction in the shear resistance was observed, implying that air entrapped in the loess was unlikely to be the main contributor to the high mobility of this large-scale landslide.
机译:在1920年海原地震期间,中国西北黄土地区引发了许多灾难性的滑坡。我们详细研究了这些滑坡的一个大例子,在本文中称为“当家岔滑坡”。该滑坡源于大约20°的坡度,位移的土壤质量流过大约3200 m,形成了一个山谷。我们进行了实地调查,发现滑坡地区存在死水,而黄土具有高孔隙度。我们推断,导致该滑坡发生较大迁移的原因是水饱和的黄土层的液化,而不是黄土中孔隙空气中淤泥的悬浮。为了检验这一推论,我们对黄土样品进行了不排水的三轴压缩和环剪试验,以检验被空气或水饱和的黄土的剪切特性。试验结果表明,水饱和的黄土对流动液化破坏高度敏感。在自然风干的黄土样品上进行的快速剪切试验表明,在“不排水的条件”下,产生的孔隙气压很小,并且未观察到剪切阻力的显着降低,这意味着截留在黄土中的空气不太可能是主要的导致了这种大规模滑坡的高移动性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号