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首页> 外文期刊>Journal of the Indian Society of Remote Sensing >Zonation of Landslide Susceptibility and Risk Assessment in Serchhip town, Mizoram
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Zonation of Landslide Susceptibility and Risk Assessment in Serchhip town, Mizoram

机译:MizoRAM的Sizhip Town山山坡易感性和风险评估的区划

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摘要

A landslide is the downward-slope movement of soil, rock or organic material under the influence of gravity. It can be caused by a variety of reasons like intense or prolonged rainfall, earthquakes, geomorphology, slope variations and human activities. Landslides include debris flow, slide, toppling or falling movements, and many landslides exhibit a combination of two or more types of movements. Mizoram is one of the most disastrous landslide-prone areas in India. The state experienced landslides yearly during monsoon season. Landslides are a natural disaster. Though landslide occurs naturally, one of the main factors contributing to landslide in city and township can be credited to human interference. The topography of Mizoram is being relatively young; landslide can be a very major economic setbacks. Mostly there are N-S-trending anticlinal strike ridges with steep slopes and narrow intervening synclinal valleys with series of parallel ridges or topographic highs. The other landforms of the state are dissected ridges with deep gorges, spurs, keels, etc. Faulting has produced steep fault scarps. Thus, Mizoram, being a hilly terrain, is extremely prone to landslides. The extent of damage caused varies considerably from place to place, which is mainly caused by human activities and by geological processes assisted by environmental processes. The study area lies in the southern part of the Aizawl district. Remote sensing and GIS techniques are used. Recent advances of satellite remote sensing technology and geographical information system techniques have provided us a more in-depth approach to study landslide phenomena. In the present study, high-resolution satellite data such as QuickBird, IRS and Cartosat-I data were utilized to map the different landslide hazard zones of Serchhip town for undertaking mitigation measures and to identify potential zones of occurrences. Satellite data are utilized for mapping and preparing landslide hazard zones. An in-depth study of slope stability within Serchhip township was also carried out, and it was found that this locality of the town has been severely affected by subsidence and landslides, endangering the lives and property of the people. It was also found that the area comprises very soft shale and interbedded, weathered sandstone and siltstone, which belongs to the Middle Bhuban Formation of Surma Group of Tertiary age. Landslide risk assessment determines the expected degree of loss to landslide and its disruption of economic activities. The correlation of landslide susceptibility with major assets in the region helps to determine the risk assessment. Risk assessment is the final goal. The main objectives are to assess the risk, vulnerability of landslides and mapping, classify the zones of landslide hazards and suggest preventive and remedial measures, methods involving extensive fieldworks and data collections, creation of thematic layers and data analysis. From the present study, it is observed that human activities paired with natural factors have made many parts of Serchhip highly prone to landslides.
机译:滑坡是在重力影响下土壤,岩石或有机材料的下坡运动。它可能是由于强烈或长期降雨,地震,地貌,坡度和人类活动等多种原因引起的。山体滑坡包括碎片流动,滑动,倒塌或下降运动,并且许多山体滑坡表现出两种或更多种类型的动作。 Mizoram是印度最灾难性的滑坡之一。该州每年在季风季节经历了山体滑坡。山体滑坡是一种自然灾害。虽然滑坡自然地发生,但贡献城市和乡镇滑坡的主要因素之一可以归功于人类干扰。 Mizoram的地形相对年轻;滑坡可以是一个非常重大的经济挫折。主要是有N-S趋势的抗冲击脊,陡坡斜坡和狭窄的干预旋钮山谷,其中一系列平行脊或地形高。该状态的其他地貌被解剖,脊,脊柱,马刺,龙骨等。断层产生陡峭的故障轴。因此,Mizoram是一个丘陵地形,非常容易发生滑坡。造成的损害程度从一个地方差异很大,主要是由人类活动和环境过程辅助的地质过程引起的。研究区位于Aizawl区的南部。使用遥感和GIS技术。卫星遥感技术和地理信息系统技术的最新进展为我们提供了一种更深入的方法来研究滑坡现象。在本研究中,利用QuickBird,IRS和Cartosat-I数据等高分辨率卫星数据来映射Serchhip镇的不同滑坡危险区,以进行缓解措施并识别出现的潜在区域。卫星数据用于映射和准备滑坡危险区。还开展了深入研究的Silechhip乡村边坡稳定性,并发现该镇的该城镇受到沉降和滑坡的严重影响,危及人民的生命和财产。还发现该地区包括非常软的页岩和互粘土,被风化的砂岩和硅铁晶,属于Bhuban群体的第三次年龄的中间人组。滑坡风险评估决定了对滑坡的预期损失程度及其对经济活动的破坏。与该地区主要资产的滑坡易感性相关有助于确定风险评估。风险评估是最终目标。主要目标是评估山体滑坡和映射的风险,脆弱性,分类滑坡危害区域,并提出了预防和补救措施,涉及广泛的实地工作和数据收集的方法,创建主题层和数据分析。从本研究开始,观察到与自然因素配对的人类活动使许多部分的性能高度容易发生山体滑坡。

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