River terraces assessment to evaluate the regional tectonic activity of the fore parts of Mishmi Block and Manabhum Anticline, North-east India: A conjunctive approach using Field Mapping and Satellite imagery

Q4 Engineering Disaster Advances Pub Date : 2023-07-15 DOI:10.25303/1608da039054
B. Gogoi, D. Bezbaruah, Yadav Krishna Gogoi
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Abstract

Terraces are the remains of a river's old floodplain. They are created when a river channel is downcut into its former floodplain, which is then deserted and subjected to lateral erosion. A former floodplain's downcutting, abandonment and lateral erosion can be caused by local or regional tectonic uplift, changes in the climate and changes in the river's discharge or a combination of these. The 1950 Mw 8.6 Great Assam Earthquake, which completely wrecked the region, occurred in the Mishmi Hills. The study area lacks tectonics research, therefore understanding the region's undulations requires a thorough understanding of terraces. Using ArcGIS 10.4, a digital elevation model (DEM) with a 30m resolution and satellite images form Google Earth Pro was superimposed on the Survey of India's topographic map for this investigation. The goal of the study is to use terrace analysis to comprehend the regional tectonic activity of the entire frontal and foothills of the Mishmi Hills. The Lohit, Dibang and Noa Dihing River are the most notable rivers in the research area. The rivers possess incised valleys and tributaries where different level of terraces may be identified. The terraces of the said rivers and tributaries are the subject of this study. Since the terrace levels vary from valley to valley, it is impossible to correlate adjacent valleys. The terraces are typically found where one of these rivers and one of its tributaries converge. The tectonic influence on various features in the studied area is typically defined through the study of terraces.
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评估印度东北部Mishmi地块和Manabhum背斜前部区域构造活动的河流阶地评估:使用现场测绘和卫星图像的联合方法
阶地是河流原有泛滥平原的遗迹。当一条河道被切割到以前的洪泛区,然后被遗弃并受到横向侵蚀时,它们就形成了。局部或区域构造隆起、气候变化、河流流量变化或这些因素的综合作用可能导致原洪泛区的砍伐、废弃和侧向侵蚀。1950年发生在米什米山的8.6级阿萨姆大地震彻底摧毁了该地区。研究区缺乏构造学研究,因此了解该地区的起伏需要对阶地有透彻的了解。利用ArcGIS 10.4,将分辨率为30米的数字高程模型(DEM)和谷歌Earth Pro的卫星图像叠加在印度地形图上进行调查。研究的目的是利用阶地分析来了解米什米山整个锋面和山麓的区域构造活动。洛希特河、迪邦河和诺阿迪庆河是研究区内最著名的河流。这些河流具有切割的山谷和支流,在那里可以识别出不同程度的阶地。上述河流和支流的梯田是本研究的主题。由于阶地的高度因山谷而异,因此不可能将相邻的山谷联系起来。阶地通常出现在这些河流及其支流的交汇处。构造对研究区各种特征的影响通常是通过对梯田的研究来确定的。
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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
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