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GEOTECHNICAL ASPECTS OF THE SUMATRA EARTHQUAKE OF SEPTEMBER 30, 2009, INDONESIA

机译:2009年9月30日,印度尼西亚苏门答腊地震的岩土工程方面

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References(16) This paper reports and discusses the results of a field survey conducted by a joint scientific group from Japan and Indonesia to assess the geotechnical aspects of the Sumatra earthquake (Mw=7.6) of September 30, 2009. The studied area included the Padang and Pariaman cities, where a number of buildings collapsed as a result of strong shaking, and a mountainous part of the Pariaman district, a place where massive landslides buried several villages, claiming more than 400 human lives. The main objective of the survey was to investigate the causes and mechanisms of catastrophic landslides; however, other geotechnical problems such as lateral spread and liquefaction were also addressed. Field observations indicated that the catastrophic landslides occurred on relatively gentle slopes, then mobilized into debris flows, and traveled several hundred meters from their points of origin. The failure surfaces developed along the boundary of highly weathered pumice tuff with more intact and less weathered bedrock. Data from a portable cone penetration test showed that the sliding material was rather weak, having SPT N-values in the range of 5-10. The results of the field survey suggested that the main cause of slope instability was high pore-water pressures that generated in the soil mass during the earthquake.
机译:参考文献(16)本文报告并讨论了由日本和印度尼西亚的联合科学小组进行的现场调查结果,以评估2009年9月30日的苏门答腊地震(Mw = 7.6)的岩土工程情况。研究区域包括巴东和帕里亚曼的城市,由于强烈的震动而倒塌了许多建筑物,以及帕里亚曼区的山区,那里大量的山体滑坡掩埋了数个村庄,夺走了400多个人的生命。这项调查的主要目的是调查灾难性滑坡的成因和机制。但是,还解决了其他岩土工程问题,例如横向扩展和液化。野外观察表明,灾难性的滑坡发生在相对平缓的斜坡上,然后动员成泥石流,并从其起点移动了几百米。破坏面沿着高度风化的浮石凝灰岩的边界发展,完好无损,风化的基岩较少。便携式圆锥体渗透测试的数据表明,滑动材料相当脆弱,其SPT N值在5-10范围内。现场调查的结果表明,边坡失稳的主要原因是地震期间土壤中产生的高孔隙水压力。

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