首页> 外文期刊>Journal of Asian earth sciences >Landslides triggered by the 22 July 2013 Minxian-Zhangxian, China, Mw 5.9 earthquake: Inventory compiling and spatial distribution analysis
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Landslides triggered by the 22 July 2013 Minxian-Zhangxian, China, Mw 5.9 earthquake: Inventory compiling and spatial distribution analysis

机译:2013年7月22日中国Min县-张县5.9级地震引发的滑坡:清单编制和空间分布分析

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摘要

On July 22,2013, an earthquake of Ms. 6.6 occurred at the junction area of Minxian and Zhangxian counties, Gansu Province, China. This earthquake triggered many landslides of various types, dominated by small-scale soil falls, slides, and topples on loess scarps. There were also a few deep-seated landslides, large-scale soil avalanches, and fissure-developing slopes. In this paper, an inventory of landslides triggered by this event is prepared based on field investigations and visual interpretation of high-resolution satellite images. The spatial distribution of the landslides is then analyzed. The inventory indicates that at least 2330 landslides were triggered by the earthquake. A correlation statistics of the landslides with topographic, geologic, and earthquake factors is performed based on the CIS platform. The results show that the largest number of landslides and the highest landslide density are at 2400 m-2600 m of absolute elevation, and 200 m-300 m of relative elevation, respectively. The landslide density does not always increase with slope gradient as previously suggested. The slopes most prone to landslides are in S, SW, W, and NW directions. Concave slopes register higher landslide density and larger number of landslides than convex slopes. The largest number of landslides occurs on topographic position with middle slopes, whereas the highest landslide density corresponds to valleys and lower slopes. The underlying bedrocks consisting of conglomerate and sandstone of Lower Paleogene (E~b) register both the largest number and area of landslides and the highest landslide number and area density values. Correlations of landslide number and landslide density with perpendicular- and along-strike distance from the epicenter show an obvious spatial intensifying character of the co-seismic landslides. The spatial pattern of the co-seismic landslides is strongly controlled by a branch of the Lintan-Dangchang fault, which indicates the effect of seismogenic fault on co-seismic landslides. In addition, the area affected by landslides related to the earthquake is compared to the relationship of "area affected by landslides vs. earthquake magnitude" constructed based on earthquakes worldwide, and it is shown that the area affected by landslides triggered by the Minxian-Zhangxian earthquake is larger than that of almost all other events with similar magnitudes.
机译:2013年7月22日,中国甘肃Min县与张县交界处发生6.6级地震。这次地震引发了许多不同类型的滑坡,主要是小规模的土壤崩塌,滑坡和黄土scar陷的倾覆。也有一些深层滑坡,大规模的雪崩和裂隙形成的斜坡。在本文中,基于现场调查和高分辨率卫星图像的视觉解释,准备了由该事件触发的滑坡清单。然后分析滑坡的空间分布。清单表明,地震至少触发了2330个滑坡。基于CIS平台对滑坡与地形,地质和地震因素的相关性进行统计。结果表明,滑坡的最大数量和最高的滑坡密度分别在绝对高程2400 m-2600 m和相对高程200 m-300 m处。滑坡密度并不总是像以前建议的那样随坡度增加而增加。最容易发生滑坡的斜坡位于S,SW,W和NW方向。凹形斜坡比凸形斜坡具有更高的滑坡密度和更多的滑坡数量。最多的滑坡发生在具有中坡的地形位置,而最高的滑坡密度对应于山谷和低坡。下古生界(Eb)的砾岩和砂岩组成的下伏基岩具有最大数量和最大面积的滑坡,以及最高的数量和面积密度。距震中的垂线和沿垂线的距离的滑坡数量和滑坡密度的相关性表明,同震滑坡具有明显的空间增强特征。同震滑坡的空间格局受临潭-当场断层的一个分支强烈控制,表明了成地震断层对同震滑坡的影响。此外,将与地震有关的滑坡影响区域与根据全球地震构造的“滑坡影响区域与地震震级”的关系进行了比较,结果表明,Min县-张县引发的滑坡影响区域地震比几乎所有其他类似震级的地震都大。

著录项

  • 来源
    《Journal of Asian earth sciences》 |2014年第10期|125-142|共18页
  • 作者单位

    Key Laboratory of Active Tectonics and Volcano, Institute of Geology, China Earthquake Administration, #1 Huayanli, Chaoyang District, PO Box 9803, Beijing 100029, China, Department of Geosciences, National Taiwan University, Taipei, Taiwan;

    Key Laboratory of Active Tectonics and Volcano, Institute of Geology, China Earthquake Administration, Beijing 100029, China;

    Department of Geosciences, National Taiwan University, Taipei, Taiwan, Key Laboratory of Active Tectonics and Volcano, Institute of Geology, China Earthquake Administration, #1 Huayanli, Chaoyang District, PO Box 9803, Beijing 100029, China;

    State Key Laboratory of Earthquake Dynamics, Institute of Geology, China Earthquake Administration, Beijing 100029, China;

    Key Laboratory of Active Tectonics and Volcano, Institute of Geology, China Earthquake Administration, Beijing 100029, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    2013 Minxian-Zhangxian earthquake; Landslides; Landslide inventory; Spatial analysis; Satellite images; Visual interpretation;

    机译:2013年Min县-张县地震;滑坡;滑坡清单;空间分析;卫星图像;视觉解读;

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