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Use of Morphological Characteristics for Multi-Criteria Evaluation through Fuzzy Analytical Hierarchy Process for Prioritization of Watersheds

机译:用模糊分析等级流域优先化的模糊分析等级方法对多标准评价的形态学特征

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Identification of prospective zones for planning and management of conservation measures at micro level to conserve available natural resources are primary requisite for sustainable development, particularly in the fragile semi-arid tropics. Establishment of control measures over the entire watershed at similar instance is unattainable / uneconomical; therefore, it is a prerequisite to apply viable techniques for prioritization of sub-watersheds (SWDs). Keeping this in view, an attempt has been madeto study various morphological characteristics and applied multiple criteria decision making (MCDM) through Fuzzy Analytical Hierarchy Process (FAHP) and Geographical Information System (GIS) techniques for identifying critical / priority sub-watershedsfalling in transaction zone between mountainous and water scarcity region of Western Part of India. The morphometric characterization over eight sub-watersheds was obtained through the measurement of distinct linear, areal and relief aspects of the sub-basins. The morphometric analysis showed the relationship among various characteristics of the watershed and performs a significant role in determining topographical and hydrological behavior of the basin. Ranking of each hydrological unit was carried outfor preferential soil and water conservation measures with respect to the value and weightages obtained by deriving the relationships between the qualitative morphometric parameters obtained from classifying the sub-watersheds by combining the robustness of fuzzy logic and the Analytical Hierarchy Process (AHP). The results of FAHP analysis showed that Circulatory Ratio, Form Factor and Elongation Ratio are observed to be the most important factors for vulnerability of soil and water resources over thebasin. On the basis of FAHP approach, sub-watersheds were considered as vulnerability assessment units and were alienated into four prioritization levels: low, modium, high and very high levels. The evaluated results illustrate that 57.67 % of sub-watersheds (five sub-watersheds) are in the moderately and highly susceptible zones, which indicates potential areas for abrupt provision of soil and water conservation interventions for the efficient watershed management planning. The sensitivity analysis aswell as a comparison between the FAHP technique and the earlier outcomes obtained with conventional techniques, such as AHP and compound parameter method, were also studied. The FAHP based technique is a viable approach in illustrating the dilemma and will be useful to various stakeholders such as rural extension community, agriculturists and water resources managers for better decision making with an obliging rule based system for implementing various assessment measures.
机译:鉴定微量水平保存措施规划和管理的预期区域,以保护可用的自然资源是可持续发展的主要原因,特别是在脆弱的半干旱热带地区。在相似实例的整个流域上建立控制措施是无法实现的/不经济的;因此,应用用于亚流域的优先级排序(SWDS)的可行技术是先决条件。保持这种情况下,尝试通过模糊分析层次处理(FAHP)和地理信息系统(GIS)技术来研究各种形态特征,并应用多个标准决策(MCDM),以及用于识别交易区中的关键/优先级分水所为的技术印度西部山区和水资源稀缺区之间。通过测量子盆地的明显线性,区域和浮雕方面来获得超过八个次流域的形态学表征。形态学分析显示了流域的各种特征之间的关系,在确定盆地的地形和水文行为方面表现了重要作用。对于通过组合模糊逻辑和分析层次过程的稳健性和分析层次过程,通过导出从分类的定性形态学参数之间的关系和重量来进行每个水文单位的优先水土和水保存措施。 (AHP)。 FAHP分析的结果表明,观察到循环比,外形和伸长率比是土壤和水资源脆弱的最重要因素。在FAHP方法的基础上,子流域被视为漏洞评估单位,疏远了四个优先级水平:低,模型,高和非常高。评估结果说明了57.67%的子流域(五个子流域)在适度和高度敏感的区域中,表明有效地提供了有效的流域管理计划的水土保持干预措施的潜在领域。还研究了敏感性分析作为FAHP技术与用常规技术获得的先前结果,例如AHP和化合物参数方法,如AHP和化合物参数方法所获得的比较。基于FAHP的技术是一种可行的方法,说明困境,对各种利益相关者有用,例如农村延伸群落,农业学家和水资源经理,以提高基于规则的规则制定各种评估措施的制度。

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