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GIS-based spatial multi-criteria approach for characterization and prioritization of micro-watersheds: a case study of semi-arid watershed, South India

机译:基于GIS的空间的空间多标准方法,用于微流域的特征和优先排序 - 以南印度半干旱流域为例

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摘要

An assessment of micro-watersheds based on topography and physical processes is always helpful in identifying suitable locations for implementing soil and water conservation measures. The present study was taken up with the objectives of characterization and prioritization of micro-watersheds using GIS-based spatial multi-criteria approach for a case study area of Andipatti watershed. In order to characterize the micro-watersheds, measurements derived from linear, areal, and relief aspects of the stream network were primarily used as indicators of topography and physical processes. To compute a comprehensive value for each micro-watershed, values of morphometric parameters viz., bifurcation ratio (Rb), drainage density (Dd), stream frequency (Fs), drainage texture (Rt), elongation ratio (Re), circularity ratio (Rc), length of overland flow (Lg), and relief ratio (Rh) were used. Further, quantitative estimation of annual average rates of soil erosion (SE) through the RUSLE method and surface runoff (SR) thorough NRSC-CN method was also integrated with micro-watersheds for ranking purposes. To normalize the rankings of each spatially distributed parameter, weights were derived through the analytical hierarchy process (AHP). Finally, the weighted rankings were summed up and all micro-watersheds are categorized into four priority classes viz. very high, high, moderate, and low. Out of 44 micro-watersheds, 16 micro-watersheds fall under very high priority class signifying the need for watershed conservation measures. Based on the priority index, suitable structural and non-structural measures are suggested to the vulnerable watersheds.
机译:基于地形和物理过程的微流域评估总有助于识别实施水土保持措施的合适地点。本研究采用了利用基于GIS的空间多标准方法进行了微流域的表征和优先级的目标,以进行Andipatti流域的案例研究区域。为了表征微流域,流网络的线性,区域和浮雕方面的测量主要用作地形和物理过程的指标。计算每个微流域的综合值,不同的形态学参数viz的值,分叉比(Rb),排水密度(DD),流频率(FS),排水纹理(RT),伸长率(RE),圆形比(RC),使用陆上流动(LG)和浮雕比(RH)。此外,通过风骚方法和表面径流(SR)彻底NRSC-CN方法的定量估计土壤侵蚀(SE)的年平均速率(SR)彻底NRSC-CN方法也与微水流域集成,用于排名。为了归一化每个空间分布参数的排名,通过分析层次处理(AHP)导出权重。最后,总结了加权排名,所有的微流域都分为四个优先级viz。非常高,高,温和,低。在44间微流域中,16个微水流域下降,非常高的优先级,表示需要流域保护措施。根据优先指数,对脆弱的流域提出了合适的结构和非结构措施。

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