可持续水资源管理的有序多目标模糊随机方法:中国太原市的案例研究

Water Supply Pub Date : 2024-02-27 DOI:10.2166/ws.2024.035
Wenyu Wu, Xuehua Zhao, Xueyou Zhang, Xixi Wu, Yuhang Zhao, Qiucen Guo, Liushan Yao, Xin Liu
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引用次数: 0

摘要

社会经济发展和气候变化的不确定性给中国太原市水资源的可持续管理带来了挑战。本研究提出了一种 2 型模糊机会约束有序多目标分式程序设计(T2FCC-ORMOFP)模型来解决不确定性条件下的水资源分配问题。该模型将 2 型模糊规划和机会约束规划纳入一个整体框架,以处理多层次、多目标冲突下的多种不确定性,同时使用分数规划来反映系统的边际效益。它优先考虑上层管理机构的最优、公平和稳定分配原则,同时考虑下层决策的社会和经济环境效益。在不同的水文保证率、供水约束违规程度和 2030 年 2 型模糊数净经济效益条件下,得出了最优水分配方案。此外,地下水被不同比例的再生水替代,以实现灵活供水。结果表明,太原市的用水需求不容忽视,农业和工业部门的缺水风险更为敏感。再生水替代策略可以优化供水结构,提高社会效益和经济效益(9-12%)。同时,与单级模型相比,T2FCC-ORMOFP 可提高总体效率(20%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An ordered multi-objective fuzzy stochastic approach to sustainable water resources management: a case study from Taiyuan City, China
The uncertainty of socioeconomic development and climate change poses challenges to the sustainable management of water resources in Taiyuan, China. The study proposes a type-2 fuzzy chance-constrained ordered multi-objective fractional programming (T2FCC-ORMOFP) model to address the allocation of water under uncertainties. The model incorporates type-2 fuzzy programming and chance-constrained programming into an overall framework to handle multiple uncertainties under multi-level and multi-objective conflicts, while using fractional programming to reflect the marginal benefits of the system. It prioritizes the principles of optimal, fair, and stable distribution by the upper-level governing authorities, while considering the social and economic environmental benefits of lower-level decision-making. The optimal water allocation scenarios were obtained under different hydrological guarantee rates, violation levels of water supply constraints, and net economic benefits of type-2 fuzzy numbers for 2030. Additionally, groundwater is replaced by reclaimed water in varying proportions for flexible water supply. The results show that the water demand in Taiyuan cannot be ignored, and the risk of water shortage is more sensitive for the agricultural and industrial sectors. The recycled water substitution strategy can optimize the water supply structure and improve social and economic benefits (9–12%). Also T2FCC-ORMOFP can improve overall efficiency (20%) compared with a single-level model.
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