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Dynamic simulation of the optimal allocation of water resources via the introduction of integrated water environmental policies in Baoding, China

机译:通过引入综合水环境政策对水资源优化分配的动态模拟

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摘要

With rapid industrialization and urbanization, regional water shortages and water quality deterioration have posed great challenges for the sustainable development of cities in North China, especially those with a large demand for agricultural irrigation water. Based on an input-output analysis, this paper develops a dynamic optimization model consisting of three sub-models and multiple constraint conditions to solve the water crisis of Baoding, a typical city experiencing water shortages and serious water pollution in North China. The water resource carrying capacity (WRCC) indicator is introduced in the analysis of the results to comprehensively assess the effect of integrated water environmental policies (IWEPs) from 2013 to 2025. In the optimal scenario, the annual chemical oxygen demand (COD) discharge and annual water demand in Baoding can be reduced by 2.6% and 0.6%, respectively, with an annual gross regional product (GRP) growth rate of 7.52%. The WRCC can be improved from moderately overloaded to weakly unsaturated, which indicates that water resources can meet the socioeconomic development requirements. The results demonstrate the effectiveness of the linear optimization model with input-output analysis in coordinating the relationships among water demand, water environment protection, and economic development, and the IWEPs provide an applicable reference for decision-makers in Baoding and other similar cities in North China to address deteriorating water systems.
机译:随着迅速的工业化和城市化,区域水资源短缺和水质恶化对华北城市可持续发展构成了极大的挑战,尤其是对农业灌溉水需求大的巨大挑战。基于输入输出分析,本文开发了一种动态优化模型,包括三种子模型和多个约束条件,以解决保定的水危机,典型的城市体验水资源短缺和北方严重的水污染。在分析结果的分析中介绍了水资源承载能力(WRCC)指标,从而全面评估2013年至2025年综合水环境政策(IWEPS)的影响。在最佳场景中,年度化学需氧量(COD)排放和保定的年度水需求分别降低2.6%和0.6%,年度总产值(GRP)增长率为7.52%。 WRCC可以从中度过载到弱不饱和,这表明水资源可以满足社会经济发展要求。结果证明了线性优化模型在协调水需求,水环境保护和经济发展之间关系中的输入 - 输出分析的有效性,IWEPS为北方保定和其他类似城市的决策者提供适用的参考中国解决水系统恶化。

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