首页> 外文期刊>Bulletin of engineering geology and the environment >Analyzing the effects of tectonic and lithology on the occurrence of landslide along Zagros ophiolitic suture: a case study of Sarv-Abad, Kurdistan, Iran
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Analyzing the effects of tectonic and lithology on the occurrence of landslide along Zagros ophiolitic suture: a case study of Sarv-Abad, Kurdistan, Iran

机译:分析构造和岩性对沿Zagros蛇纹石缝合线滑坡发生的影响:以伊朗库尔德斯坦Sarv-Abad为例

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摘要

Assessment of the landslide susceptibility can provide useful information in the management and mitigation of the negative consequences of this phenomenon. The purpose of this study was to map the landslide susceptibility and to highlight the effects of tectonic and lithology. The landslide-causing factors including distance from faults, lithology, slope gradient, slope aspect, distance from drainages, distance from roads, land use, and precipitation were used for the landslide susceptibility mapping by using analytical hierarchical process (AHP) method. Based on the landslide susceptibility zonation map, the study area was grouped into five susceptibility classes including very low, low, moderate, high, and very high. High values of landslide density in very high and high susceptible zone, and the high percentage of area under the success rate curve (72.65%) show that the AHP method has accurately predicted the landslide susceptibility zonation map of the study area. Data reveal that most landslides are close to the Zagros Main Recent Fault (MRF) and the Main Zagros Reverse Fault (MZRF) that merge with each other along the trend of Azad River. These faults have locally produced zones of extension and contraction that have caused the intense faulting and fracturing of rocks and hence the intensification of the landslides. The Oligo-Miocene marl (with high potential of plasticity, expanding, and cracking), the Oligo-Miocene limestone (with steep dip slopes and strike-slip faults) that overlies the Oligo-Miocene marls as a lubricant, and serpentinites (with high capacity of flexibility, plasticity, and sheeting) are three important lithological units that are more prone to landsliding.
机译:对滑坡敏感性的评估可以为管理和减轻这种现象的负面影响提供有用的信息。这项研究的目的是绘制滑坡敏感性图,并强调构造和岩性的影响。利用层次分析法(AHP),将距断层的距离,岩性,坡度,坡度,距排水沟的距离,距道路的距离,土地利用和降水等引起滑坡的因素用于滑坡敏感性图。根据滑坡敏感性分区图,将研究区域分为五个类别,包括极低,低,中,高和极高。在非常高和高敏感区的滑坡密度值很高,并且成功率曲线下的面积百分比很高(72.65%),这表明AHP方法可以准确地预测研究区域的滑坡敏感性分区图。数据显示,大多数滑坡都靠近Zagros主要近期断层(MRF)和Zagros反向主要断层(MZRF),它们沿着Azad河的趋势相互融合。这些断层具有局部产生的伸展和收缩区域,这些区域引起了岩石的强烈断层和破裂,从而引起了滑坡的加剧。 Oligo-中新世泥灰岩(具有较高的可塑性,膨胀和破裂潜力),Oligo-中新世石灰岩(具有陡峭的倾角和走滑断层)覆盖了Oligo-中新世泥灰岩作为润滑剂,以及蛇纹岩(具有较高的塑性)柔韧性,可塑性和片材性能)是三个更容易滑坡的重要岩性单元。

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