灵敏度(控制系统)
综合指数
索引(排版)
适应能力
脆弱性(计算)
层次分析法
模糊逻辑
农业
环境科学
计算机科学
环境资源管理
运筹学
气候变化
综合指标
生态学
数学
工程类
计量经济学
人工智能
生物
计算机安全
电子工程
万维网
作者
Debarati Bera,Dipanwita Dutta
摘要
ABSTRACT With increasing extreme weather events, ground water crisis and population expansion, crop stress and production failure have emerged as critical challenges. Agricultural drought vulnerability (ADV) at local and regional scales has become a global concern as it is directly related to food security, hunger issues and poverty. The Kangsabati river basin is one of the major drought‐prone river basin in the eastern India and frequently affected by the reduction of crop production or crop failure because of fluctuation of monsoonal rainfalls, poor irrigation system and harsh edaphic factors. In this context, this study focuses on assessing agricultural vulnerability in the Kangsabati basin using multi‐sensor datasets and geospatial techniques. The ADV has been assessed through multi‐source data sets covering meteorological, agricultural, soil and socio‐economic aspects using a powerful, systematic, and flexible decision‐making fuzzy‐based analytic hierarchy process (fuzzy‐AHP) technique. The ADV index is a functional product of two composite indices: the sensitivity index (SI) and the adaptivity index. The SI is derived from components like the intensity of agricultural drought index, groundwater stress, soil erosion, percentage of cultivators, marginal workers and agricultural land. Adaptive capacity depends upon human, financial, physical, infrastructural and natural capital. Each index was derived considering various factors using fuzzy‐AHP methods for weightage calculation. The composite indices revealed the variation of resource distribution precisely in each geographically distinct zone. The study shows that almost 60% of the highly sensitive zone is situated in the upper basin region characterised by undulating lands. A large part of the entire basin (48%) is moderately drought‐sensitive. The result also shows that a significant part (35%) of the upper and middle basin is highly vulnerable to agricultural drought. In contrast, the lower basin exhibits low to very low levels of vulnerability to drought. The results indicate that even though some areas are moderate to less sensitive, the vulnerability of agricultural drought has become high due to their limited adaptive capacity. The comprehensive framework developed for assessing ADV has the potential for region‐specific policy implementation and sustainable growth.
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