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首页> 外文期刊>Journal of Water Resources Planning and Management >Using Stochastic Dynamic Programming to Support Water Resources Management in the Ziya River Basin, China
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Using Stochastic Dynamic Programming to Support Water Resources Management in the Ziya River Basin, China

机译:利用随机动态规划支持子牙河流域水资源管理

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摘要

Water scarcity and rapid economic growth have increased the pressure on water resources and environment in Northern China, causing decreased groundwater tables, ecosystem degradation, and direct economic losses due to insufficient water supply. The authors applied the water value method, a variant of stochastic dynamic programming, to optimize water resources management in the Ziya River basin. Natural runoff from the upper basin was estimated with a rainfall-runoff model autocalibrated using in situ measured discharge. The runoff serial correlation was described by a Markov chain and used as input for the optimization model. This model was used to assess the economic impacts of ecosystem minimum flow constraints, limited groundwater pumping, and the middle route of the South-North Water Transfer Project (SNWTP). A regional climate shift has exacerbated water scarcity and increased water values, resulting in stricter water management. The results show that the SNWTP reduces the impacts of water scarcity and impacts optimal water management in the basin. The presented modeling framework provides an objective basis for the development of tools to avoid overpumping groundwater resources at minimum costs.
机译:水资源短缺和经济快速增长增加了中国北方水资源和环境的压力,导致地下水位下降,生态系统退化以及由于供水不足而造成的直接经济损失。作者应用水价值方法(一种随机动态规划方法)来优化子牙河流域的水资源管理。上流域的天然径流是用降雨径流模型估算的,该模型使用就地测量的流量自动校准。径流序列相关性由马尔可夫链描述,并用作优化模型的输入。该模型用于评估生态系统最小流量限制,有限的地下水泵送以及南水北调工程(SNWTP)的中间路线的经济影响。区域气候变化加剧了水资源短缺和水价上涨,从而导致了更严格的水管理。结果表明,SNWTP减少了缺水的影响并影响了流域的最佳水资源管理。所提出的建模框架为开发工具提供了客观的依据,从而可以以最小的成本避免过度开采地下水资源。

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