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The internal structure of a rockslide dam induced by the 2008 Wenchuan (Mw7.9) earthquake, China

机译:2008年汶川(Mw7.9)地震诱发的石坝大坝内部结构

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摘要

The internal structure of landslide dams plays a key role in their stability; however, it has not been much studied, probably due to the difficulty in obtaining information on internal structure in most cases. Here, we examined the shear-wave-velocity structure of a rockslide dam by a surface-wave technique called multichannel analysis of surface waves (MASW). During the 2008 Wenchuan earthquake (Mw7.9), more than 60, 000 landslides were triggered and 800 landslide dams formed. Those dams with a high risk of collapse threatened rescue activities, and almost all of the large landslide dams were treated by digging a sluiceway immediately after the earthquake. Although the risk of collapse of many landslide dams was removed or lowered, not all of the countermeasures were based on well controlled methods. To analyze the internal of landslide dams to assist in carrying out reliable countermeasures, we made detailed investigations on some of the dams, and here describe one landslide dam that occurred in the Tianchi area. Grain-size analysis revealed that the displaced landslide materials experienced fragmentation and segregation during the long movement. The shear-wave-velocity profile of the dam revealed that the dam consisted of three facies (carapace, body and basal facies). The boundary between facies is distinct. The body facies had a greater shear-wave velocity (compared to those landside dams that had suffered collapse failure during the construction of a sluiceway), showing that the dam consisted of more densely deposited materials. This kind of dam body had a lower permeability, capable of retarding seepage that triggers collapse failure of the dam body due to piping. Big blocks on the surface also enabled the dam body to have greater resistance to overflow and thus reducing possible collapse failure in the immediate aftermath of overtopping.
机译:滑坡坝的内部结构对其稳定性起着关键作用。然而,由于在大多数情况下难以获得有关内部结构的信息,因此尚未对其进行大量研究。在这里,我们通过称为表面波多通道分析(MASW)的表面波技术检查了滑坡坝的剪切波速度结构。在2008年汶川地震(Mw7.9)期间,触发了60多个滑坡,形成了800个滑坡水坝。那些具有高坍塌风险的水坝威胁着救援活动,地震后,几乎所有大型滑坡水坝都通过挖水闸来处理。尽管消除或降低了许多滑坡大坝倒塌的风险,但并非所有对策都基于控制良好的方法。为了分析滑坡坝的内部结构,以协助采取可靠的对策,我们对一些水坝进行了详细调查,并在此描述了天池地区发生的一处滑坡坝。粒度分析表明,在长期移动过程中,位移的滑坡物质经历了破碎和偏析。大坝的剪切波速度剖面表明,大坝由三个相组成(甲壳,体相和基底相)。相之间的边界是不同的。体相具有较大的剪切波速度(与那些在修建水闸时遭受坍塌破坏的陆上大坝相比),表明该大坝由密度更大的沉积物组成。这种坝体的渗透率较低,能够抑制由于管道作用而引起坝体坍塌破坏的渗流。表面上的大块块还使坝体具有更大的抗溢流能力,从而减少了突然翻覆后可能发生的坍塌破坏。

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