Evaluation of industrial green development level in Yangtze River Economic Belt

被引:0
|
作者
Jia P. [1 ]
Yang B. [1 ]
Wang H. [1 ,2 ]
Liu Y. [1 ]
机构
[1] College of Water Sciences, Beijing Normal University, Beijing
[2] Beijing Key Laboratory of Urban Hydrological Cycle and Sponge City Technology, Beijing Normal University, Beijing
关键词
entropy weight method; green development; partial connection coefficient method; PSR model; variable set method; Yangtze River Economic Belt;
D O I
10.3880/j.issn.1004-6933.2023.01.019
中图分类号
学科分类号
摘要
In order to implement the " sixteen character" water control policy of the Yangtze River Economic Belt, and properly handle the issues of resource utilization and environmental protection during development, the PSR model was used to construct an index evaluation system. Combined with the entropy weight method, variable set method and partial connection coefficient method, the index evaluation system was used to analyze the industrial green development indicators, development level and distribution laws of the provinces and cities in the Yangtze River Economic Belt from 2008 to 2017, and construct an industrial green development evaluation system in the Yangtze River Economic Belt. The results show that the overall green development level of the Yangtze River Economic Belt is improving, and there are differences in the development levels within different river basins. The green development level of the upper, middle and lower reaches is improving in turn. © 2023, Editorial Board of Water Resources Protection. All rights reserved.
引用
收藏
页码:142 / 149
页数:7
相关论文
共 37 条
  • [31] ZHAO Keqin, Set pair analysis and its preliminary application[J], Discovery of Nature, 1, pp. 67-72, (1994)
  • [32] ZHAO Keqin, Description and treatment of uncertainty in set pair analysis[J], Information and Control, 24, 3, pp. 162-166, (1995)
  • [33] YANG Yafeng, WANG Hongrui, GONG Shuxin, Et al., Variable pythagorean fuzzy VIKOR evaluation regulation model of water resources system resilience and its application[J], Journal of Hydraulic Engineering, 52, 6, pp. 633-646, (2021)
  • [34] WANG Hongrui, GONG Shuxin, DENG Caiyun, Et al., Research on water resources carrying capacity based on five-element connection number[J], Journal of Northwest University (Natural Science Edition), 49, 2, pp. 211-218, (2019)
  • [35] CHEN Shouyu, Variable sets and the theorem and method of optimal decision making for water resource system[J], Journal of Hydraulic Engineering, 43, 9, pp. 1066-1074, (2012)
  • [36] Qiling HU, DONG Zengchuan, YANG Yanfei, Et al., State evaluation model of water resources carrying capacity based on connection number[J], Journal of Hohai University (Natural Sciences), 47, 5, pp. 425-432, (2019)
  • [37] YANG Hongmei, ZHAO Keqin, The calculation and application of partial connection numbers[J], CAAI Transactions on Intelligent Systems, 14, 5, pp. 865-876, (2019)