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Determination of erosion surfaces and stages of evolution of Sangra drainage basin in Giridih district, Jharkhand, India

机译:印度贾坎德邦吉里迪地区桑格拉流域侵蚀面和演化阶段的确定

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A major emphasis in geomorphology over the past several decades has been on the development of quantitative physiographic methods to describe the evolution and behavior of surface drainage networks. The quantitative analysis of morphometric parameters is found to be of immense utility in river basin evaluation. The influence of drainage morphometry is very significant in understanding the landform processes, soil physical properties and erosional characteristics. Drainage characteristics of many river basins and sub-basins in different parts of the globe have been studied using conventional methods. Modern statistical analysis and Geographical Information System (GIS) techniques are now-a-day used for assessing various terrain and morphometric parameters of the drainage basins as they provide a flexible environment and a powerful tool for the manipulation and analysis of spatial information. In the present study, stream number, order, frequency, density and bifurcation ratio are derived and tabulated on the basis of areal and linear properties of drainage channels using GIS based on drainage lines of Sangra Drainage Basin of Giridih, Jharkhand as represented over the topographical map (R.F. 1 50,000). Area-altitudinal relationship also be assessed in this work to identify the erosional surfaces as well as stage of evolution. Besides, this paper is an attempt to analyze and establish relationship between the depended and independent variables through Principal component analysis to identify the major morphometric parameters which has a significant role in the erosional landforms of this drainage basin.
机译:在过去的几十年中,地貌学的主要重点是定量生理学方法的发展,以描述地表排水网络的演变和行为。形态计量学参数的定量分析在流域评价中具有巨大的实用价值。排水形态的影响对于了解地形过程,土壤物理性质和侵蚀特征非常重要。已经使用常规方法研究了全球不同地区许多流域和子流域的排水特征。现代统计分析和地理信息系统(GIS)技术如今已用于评估流域的各种地形和形态参数,因为它们为处理和分析空间信息提供了灵活的环境和强大的工具。在本研究中,利用地理信息系统(GIS),基于贾尔肯德邦吉里迪桑桑格拉流域的排水线,在地形上表示了河流的数量,次序,频率,密度和分叉比,并根据排水通道的面积和线性特性将其制表。地图(RF 1 50,000)。在这项工作中,还应评估面积与海拔的关系,以识别侵蚀面和演化阶段。此外,本文试图通过主成分分析来分析和建立因变量和自变量之间的关系,以识别在该流域侵蚀地貌中具有重要作用的主要形态参数。

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