首页> 外文期刊>Journal of the Indian Society of Remote Sensing >Spatiotemporal Migration of the River Ganga in Middle Ganga Plane: Application of Remote Sensing and GIS Technique
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Spatiotemporal Migration of the River Ganga in Middle Ganga Plane: Application of Remote Sensing and GIS Technique

机译:中甘河江江飞机的时空迁移:遥感和GIS技术的应用

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摘要

The process of channel migration becomes crucial to a populace living in or near the floodplain or to government organizations involved in planning or upholding the infrastructure within or nearby the floodplains. Spatiotemporal migration of the River Ganga in the Middle Ganga Plain for about forty years (1972-2018) was measured using Landsat images, coupled with extensive ground checks. Assessment of satellite images of 1972, 1990, 2000, 2010, and 2018 reveals the Ganga River migrated within its valley, demonstrating significant changes in the channel geometry on a decadal scale. Heavy rains promote the enhancement of the sediment load in the channel triggering a further increase in the sinuosity index. However, the overall sinuous nature of the Ganga River channel is mainly fault-controlled. The variable lateral migration of the channel seems related to heavy rains and reactivation of chute channels within the river valleys. The lateral movement of the river is one of the critical factor responsible for the failure of the older floodplain (bank) within the valley by the undercutting process.
机译:渠道迁移的过程对生活在洪泛区或附近的民众或涉及洪水平均内部或附近的基础设施的政府组织的群体变得至关重要。使用Landsat图像测量了大约四十年(1972-2018)的甘兰河甘河的时空迁移,加上了广泛的地面检查。评估1972年,1990年,2000年,2010年和2018年的卫星图像揭示了甘河河在其山谷内迁移,展示了渠道几何形状的重大变化在额外的规模上。大雨促进了抗沉积物的增强,触发了陷阱指数的进一步增加。然而,Ganga河道的整体蜿蜒性质主要是故障控制的。该频道的变量横向迁移似乎与河谷内寒冷通道的大雨和再激活有关。河流的横向运动是底切过程负责谷谷(银行)失败的关键因素之一。

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