Towards sustainability for water-agriculture-energy-ecosystems nexus with interconnected uncertainty: A vine copula-based fixed-mix stochastic programming method

IF 6.5 1区 农林科学 Q1 AGRONOMY
Yanxiao Zhou , Yongping Li , Guohe Huang , Yufei Zhang
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Abstract

The collaborative management of the water-agriculture-energy-ecosystems (WAEE) nexus is of great significance for promoting sustainable development; however, some parameters associated with interconnected uncertainty (i.e., joint-random uncertainty) existing in the WAEE nexus can introduce additional complexity and intensify the conflict-laden issue of water allocation among agriculture, energy and ecosystems. This study develops a vine copula-based fixed-mix stochastic programming (VCFSP) method that can capture joint violation risks among multiple random variables and handle uncertainties represented as probability distributions in the WAEE nexus. A VCFSP-WAEE model is then formulated for synergistically managing the WAEE nexus of the Kaidu-Kongque River Basin in northwest China, where 96 scenarios involving different utilization rates of brackish water and joint violation probabilities are examined. Results reveal that, with the increase of brackish water utilization rate: (i) the total amount of water (allocated to agriculture, energy and ecosystems) would rise from 13.5 × 109 m3 to 16.0 × 109 m3 during 2046–2050, while the amount of conventional water resources would decrease by 209.4 × 106 m3; (ii) the agricultural cultivated area would increase by 0.4 × 106 ha, and the food yield would increase by 4.7 × 109 kg at the end of planning period. In order to alleviate the pressure of local surface water and groundwater shortages, it is suggested to enhance the utilization efficiency of unconventional water resources and develop low-cost desalination technologies. Compared with the current situation, during the planning period, the proportion of agricultural water allocation would show a general decrease trend (from 73.2 % to 55.9 %), while the proportion of ecological water allocation would present an increase trend (from 6.5 % to 17.7 %). This discloses that increasing the utilization of unconventional water (especially brackish water) is beneficial for increasing ecological water supply, thereby improving the eco-environment in arid regions.
具有相互不确定性的水-农业-能源-生态系统关系的可持续性:一种基于藤copula的固定混合随机规划方法
水-农业-能源生态系统协同管理对促进可持续发展具有重要意义;然而,WAEE关系中存在的一些与相互关联的不确定性(即联合随机不确定性)相关的参数可能会引入额外的复杂性,并加剧农业、能源和生态系统之间的水资源分配冲突问题。本文提出了一种基于vine copula的固定混合随机规划(VCFSP)方法,该方法可以捕获多个随机变量之间的联合违规风险,并处理WAEE nexus中以概率分布表示的不确定性。在此基础上,建立了开都-孔雀河流域WAEE协同管理的VCFSP-WAEE模型,考察了96种不同微咸水利用率和联合违规概率的情景。结果表明:随着微咸水利用率的提高,2046—2050年,农业、能源和生态系统用水总量将从13.5 × 109 m3增加到16.0 × 109 m3,常规水资源总量将减少209.4 × 106 m3;(2)计划期末农业耕地面积可增加0.4 × 106 ha,粮食产量可增加4.7 × 109 kg。为缓解当地地表水压力和地下水短缺,建议提高非常规水资源的利用效率,发展低成本的海水淡化技术。与现状相比,规划期内农业用水分配比例总体呈下降趋势(从73.2 %下降到55.9 %),生态用水分配比例呈上升趋势(从6.5 %上升到17.7 %)。这说明增加非常规水(特别是微咸水)的利用有利于增加生态供水,从而改善干旱区的生态环境。
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来源期刊
Agricultural Water Management
Agricultural Water Management 农林科学-农艺学
CiteScore
12.10
自引率
14.90%
发文量
648
审稿时长
4.9 months
期刊介绍: Agricultural Water Management publishes papers of international significance relating to the science, economics, and policy of agricultural water management. In all cases, manuscripts must address implications and provide insight regarding agricultural water management.
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