基于遥感技术的山体滑坡检测和评估预警系统:印度喜马偕尔邦案例研究

Q4 Engineering Disaster Advances Pub Date : 2024-01-31 DOI:10.25303/173da048060
V. Janaki, M. Madhusudhan Reddy, K. Ravi Kumar, B. Sharath Chandra, O.S.D. Hima Bindu
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引用次数: 0

摘要

在 "基于遥感的边坡崩塌预警系统 "框架内开展的案例研究介绍了在监测边坡和检测海拔变化方面应用遥感技术的实际案例。研究重点是以地形崎岖和气候条件多变著称的印度喜马偕尔邦。喜马偕尔邦位于印度西北部,北纬 30°22'40" 至 33°12'20",东经 75°45'55" 至 79°04'20"。该山区海拔从 271 米到 6751 米不等,地形和气候各不相同。地理空间数据揭示了其复杂性,结合海拔、坡度、山坡和粗糙度信息,提供了对地形动态的深入了解。地质图突出显示了印度和亚洲大陆碰撞形成的前寒武纪地貌,从而形成了独特的喜马拉雅地貌。该地区还经历了集中的地貌降水、冰川活动和快速侵蚀。通过分析历史地震和活动断层,可以发现地震活动与山体滑坡的相关性,突出了山体滑坡引发斜坡崩塌的可能性。山体滑坡清单地图记录了 6,289 处山体滑坡,概述了它们的分布和移动模式。滑坡可持续性地图将各地区划分为不同的易发等级,从而为我们提供更深入的信息。综合地理空间分析提供了对喜马偕尔邦地形的全面了解,为风险评估、基础设施规划和环境保护提供了实际应用。
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Remote Sensing based Early Warning Systems for Detection and Assessment of Landslides: A Case Study of Himachal Pradesh, India
Case studies within the framework of "Remote Sensing-Based Early Warning Systems for Slope Failures" present real-world instances of applying remote sensing technologies in monitoring slopes and detecting changes in elevation. The study focuses on Himachal Pradesh, India, known for its rugged terrain and varying climatic conditions. Himachal Pradesh, situated in North-West India, spans from 30°22'40" to 33°12'20" north latitudes and 75°45'55" to 79°04'20" east longitudes. With altitudes ranging from 271 meters to 6,751 meters, this mountain region exhibits diverse topography and climate. Geospatial data reveals its complexities, combining elevation, slope, hillside and roughness information to offer insights into the terrain's dynamics. The geological map highlights the State's Precambrian formations shaped by the collision of the Indian and Asian landmasses, resulting in the distinctive Himalayan landscape. The region has also experienced concentrated orographic precipitation, glacial activity and rapid erosion. Analyzing historical earthquakes and active faults reveals the seismic activity's correlation with landslides, highlighting their potential to trigger slope failures. The landslide inventory map records 6,289 landslides, outlining their distribution and movement patterns. Further insight is gained from the Landslide sustainability map, classifying regions into susceptibility levels. Integrated geospatial analyses provide a comprehensive understanding of Himachal Pradesh's terrain, offering practical applications in risk assessment, infrastructure planning and environmental conservation.
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来源期刊
Disaster Advances
Disaster Advances 地学-地球科学综合
CiteScore
0.70
自引率
0.00%
发文量
57
审稿时长
3.5 months
期刊介绍: Information not localized
期刊最新文献
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