首页> 外文会议>International Conference on Water Resources, Coastal and Ocean Engineering >Multi Criteria Decision Analysis (MCDA) for watershed Prioritization
【24h】

Multi Criteria Decision Analysis (MCDA) for watershed Prioritization

机译:流域优先级的多标准决策分析(MCDA)

获取原文

摘要

River/stream's catchment area, which is the source of endowment for water resource projects, is generally developed without giving much emphasis on protection against soil's erosion from catchment that results into loss of beneficial storage, breach of banks, loss of nutrients and many other environmental problems. The prioritization of sub-watersheds, which are atmost important in developing catchment area treatment (CAT) plan identification of priority sub-watersheds is utmost important in developing any catchment area treatment plan and watershed management activities can help take necessary precautionary measures a-priori. The paper presents the application of Saaty's AHP based Multi criteria decision analysis (MCDA) in prioritizing of vulnerable area of watershed. The analytical hierarchical process based MCDA is a powerful tool that analyzes problems which depend on a number of spatially distributed complex criteria. In the present case, the Saaty's AHP based MCDA tool has been applied to the Kodar reservoir catchment (in Chhattisgarh state in India) using nine erosion hazard parameters (EHPs), which vary spatially and depend on climate, topography, soil, geomorphology, conservation and management practices. For prioritizing the vulnerable areas, the Kodar catchment has been divided into 67 sub-watersheds and analyzed nine EHPs responsible for soil degradation and soil loss in GIS environment using revised universal soil loss equation (RUSLE) model (SL), sediment yield (SY), sediment production rate (SPR), sediment transport index (STI), slope (Slp), drainage density (D_d), channel frequency (C_f), form factor (R_f), circulatory ratio (R_c). To prepare EHPs criteria maps, soil and remote sensing data, topographic information and field knowledge have been used. The normalized values of EHPs and the corresponding weights obtained from Saaty's AHP based MCDA tool have been used to prioritize the sub-watersheds. The results showed, soil loss (SL) occupied the maximum weight of 0.33 and the circulatory ratio had minimum weight of 0.02 at 9.3% consistency ratio (within 10% limit). The priorities of sub-watersheds in the Kodar catchment ranged between 0.12 and 0.74. The normalized priority of 0.74 and 0.12 obtained for SW-44 and SW-41 respectively can be considered as the top and minimum prioritized sub-watersheds for soil conservation measures. The analyzed results could help in developing an implementable CAT plan of the Kodar catchment. The paper also demonstrates a procedure of analyzing EHPs and use of those in MCDA for prioritizing soil erosion vulnerable zones/areas.
机译:河流/溪流集水区,这是水资源项目捐赠的源泉,这一般都在制定,而不是强调防止土壤侵蚀的影响,导致损失有利储存,违反银行,营养素丧失以及许多其他环境问题。次流域的优先级,在发展集水区治疗(猫)计划识别优先次级分水岭的计划识别至关重要的是,在开发任何集水区治疗计划和流域管理活动方面最为重要,可以帮助采取必要的预防措施a-priori。本文介绍了Saaty基于AHP的多标准决策分析(MCDA)在流域脆弱地区的优先考虑中的应用。基于分析的分层过程的MCDA是一个强大的工具,分析了依赖于多个空间分布式复杂标准的问题。在本案中,使用九个侵蚀危险参数(EHPS),Saaty的基于AHP的MCDA工具已应用于Kodar Choploin(印度Chhattisgarh州),这些参数(EHPS)在空间上变化,依赖于气候,地形,土壤,地貌,保护和管理惯例。对于优先脆弱的地区,KODAR流域又被分为67个子流域和分析9个EHPS负责土壤退化和使用修改后的通用土壤流失方程(RUSLE)模型(SL)在GIS环境土壤流失,产沙量(SY) ,沉积物生产率(SPR),沉积物传输指数(STI),斜率(SLP),排水密度(D_D),通道频率(C_F),外形(R_F),循环比(R_C)。为了准备EHPS标准地图,土壤和遥感数据,已经使用了地形信息和现场知识。从Saaty的基于AHP的MCDA工具获得的EHP的归一化值和相应的权重已被用于优先考虑子流域。结果表明,土壤损失(SL)占用的最大重量为0.33,循环比率最低重量为0.02,稠度比率为9.3%(10%限制范围内)。在Kodar集水区中的子流域的优先级在0.12和0.74之间。 SW-44和SW-41获得的归一化优先级为0.74和0.12,可分别被认为是用于土壤保护措施的顶部和最低优先级分水栓。分析的结果有助于制定可实现的Kodar集水区的猫计划。本文还展示了分析EHP和MCDA中的程序的程序,以优先排序土壤侵蚀脆弱的区域/地区。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号