School of Business, Jiangnan University, Wuxi 214122, China.
School of Accounting, Wuxi Taihu University, Wuxi 214063, China.
Int J Environ Res Public Health. 2023 Jan 12;20(2):1394. doi: 10.3390/ijerph20021394.
Based on the driving force-pressure-state-impact-response (DPSIR) model, a comprehensive evaluation index system is constructed. The index weight is determined by the combination weighting method in combination with the data of 2010-2019. The TOPSIS model is used to comprehensively analyze the water resource carrying capacity of Zhengzhou as the central city in China with a developed economy and relatively short water resources. The study results are as follows. (1) During the sample period, the comprehensive evaluation value of water resources carrying capacity of Zhengzhou increases from 0.4183 in 2010 to 0.5560 in 2019, with an overall fluctuating rise. Simultaneously, the water resource carrying capacity grade improves from Grade III (normal carrying capacity) to Grade II (good carrying capacity). (2) The contribution of each subsystem to the comprehensive evaluation value increases year by year. Among them, S subsystem and I subsystem make the largest contribution to the comprehensive carrying capacity. R subsystem makes a relatively stable contribution to the overall carrying capacity. Affected by GDP growth rate and uneven temporal-spatial distribution of water resources in Zhengzhou, the D subsystem and P subsystem of water resource carrying capacities show the fluctuating change. Finally, based on the above conclusions, this paper puts forward the countermeasures and suggestions to improve the level of water resource carrying capacity of Zhengzhou.
基于驱动力-压力-状态-影响-响应(DPSIR)模型,构建了一个综合评价指标体系。该指标权重采用组合赋权法与 2010-2019 年数据相结合确定。采用 TOPSIS 模型对中国经济发达、水资源相对短缺的中心城市郑州的水资源承载能力进行综合分析。研究结果如下:(1)在样本期内,郑州水资源承载能力的综合评价值从 2010 年的 0.4183 增加到 2019 年的 0.5560,总体呈波动上升趋势。同时,水资源承载能力等级由 III 级(正常承载能力)提升至 II 级(良好承载能力)。(2)各子系统对综合评价值的贡献逐年增加。其中,S 子系统和 I 子系统对综合承载能力的贡献最大。R 子系统对整体承载能力的贡献相对稳定。受 GDP 增长率和郑州水资源时空分布不均的影响,水资源承载能力的 D 子系统和 P 子系统表现出波动变化。最后,根据上述结论,提出了提高郑州水资源承载能力水平的对策和建议。