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中国沙漠 ›› 2024, Vol. 44 ›› Issue (6): 37-47.DOI: 10.7522/j.issn.1000-694X.2024.00056

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山西省水资源与种植结构耦合协调现状及驱动因素

戴燕燕1,2(), 蒋依婷3, 张鹏飞1,2(), 刘庚1,2, 张蕾2   

  1. 1.太原师范学院,地理科学学院,山西 晋中 030619
    2.太原师范学院,汾河流域地表过程与资源生态安全山西省重点实验室,山西 晋中 030619
    3.河南大学 新闻与传播学院,河南 郑州 450046
  • 收稿日期:2024-03-05 修回日期:2024-04-12 出版日期:2024-11-20 发布日期:2024-12-06
  • 通讯作者: 张鹏飞
  • 作者简介:张鹏飞(E-mail: zhangpf66@163.com
    戴燕燕(1984—),女,山西太原人,博士,副教授,主要研究领域为资源评价与开发。E-mail: dai309041142@163.com
  • 基金资助:
    国家自然科学基金项目(42130507);教育部人文社科规划基金项目(19YJAZH066);山西省自然科学研究面上项目(202303021211186);山西省哲学社会科学规划课题(2023YY224);山西省留学人员科研资助项目(2023-159);山西省高等学校教学改革创新项目(J20220928);山西省高等学校科技创新项目(2019L0781);山西省研究生教育教学改革课题(2022YJJG245)

Coupling coordination and driving factors between water resources and planting structure in Shanxi, China

Yanyan Dai1,2(), Yiting Jiang3, Pengfei Zhang1,2(), Geng Liu1,2, Lei Zhang2   

  1. 1.School of Geographic Sciences /, Taiyuan Normal University,Jinzhong 030619,Shanxi,China
    2.Shanxi Key Laboratory of Surface Processes and Resource Ecological Security of Fenhe River Basin, Taiyuan Normal University,Jinzhong 030619,Shanxi,China
    3.School of Journalism and Communication,Henan University,Zhengzhou 450046,China
  • Received:2024-03-05 Revised:2024-04-12 Online:2024-11-20 Published:2024-12-06
  • Contact: Pengfei Zhang

摘要:

梳理水资源系统与种植结构系统的耦合关系及其影响因素,对水资源短缺和粮食生产结构单调的山西省具有重要意义。在理论揭示山西省11个地市2007—2020年两系统的耦合作用机理的基础上,利用耦合协调度及地理探测器模型分析两系统耦合协调的时空格局及其影响因素。结果表明:(1)山西省水资源与种植结构的综合水平还处于较低层次。复合系统综合发展指数呈现出晋中和晋东南高、晋北和晋南低的特点。(2)山西省水资源与种植结构耦合协调度趋好但总体水平较低,研究期内总体由濒临失调逐步发展到初级协调。空间上,耦合协调度阳泉市太原市吕梁市晋城市晋中市忻州市长治市临汾市朔州市大同市运城市。(3)山西省水资源与种植结构耦合协调度存在空间集聚特征,但集聚程度不强,研究期内集聚程度先升后降。耦合协调度高的地区对邻近地市的辐射能力较弱。(4)影响山西省水资源与种植结构耦合协调度的主导因子依次为农业机械化水平、第一产业用水占比、生态环境用水占比、生活用水占比、地下水供水占比和人均用水量等。另外,各因子与其他因子两两交互后,对耦合协调性的影响起到了双因子增强的效果。

关键词: 水资源, 种植结构, 耦合协调度, 时空差异, 驱动因素

Abstract:

Sorting out the coupling relationship and driving factors between water resource and planting structure is great significance in Shanxi Province, which faces water shortage and monotonous food production structure. Based on the coupling mechanism of the two systems among 11 prefecture-level cities in Shanxi Province from 2007 to 2020, this research analyzes the spatial and temporal patterns of the coupling coordination of the two systems and its driving factors by utilizing the coupling coordination degree model and the geo-detector model. The results show that: (1) The overall development level of water resources and planting structure in Shanxi Province remains at a low level. The comprehensive development index of the composite system demonstrates a high level in the Jinzhong and southeastern regions of Shanxi, whereas it exhibits a low level in the northern and southern regions of the province. (2) The coupling coordination degree between the two systems in Shanxi Province tends to be favorable, albeit at a generally low level. Over the study period, it gradually evolves from imminent dissonance towards primary coordination. In terms of spatial distribution, the coupling coordination degree among the prefecture-level cities, from highest to lowest, is as follows: Yangquan City Taiyuan City Lvliang City Jincheng City Jinzhong City Xinzhou City Changzhi City Linfen City Shuozhou City Datong City Yuncheng City. (3) The coupling coordination degree of the two systems in Shanxi Province exhibits spatial agglomeration characteristics, albeit with a relatively weak agglomeration intensity. Over the study period, the agglomeration degree initially increases and subsequently decreases. Notably, regions with a high coupling coordination degree exert a comparatively weaker influence on neighboring cities. (4) The dominant factors affecting the coupling coordination degree of the two systems in Shanxi Province include the agricultural mechanization level, the proportion of water used in primary industries, the proportion of water allocated to ecological environments, the proportion of domestic water use, the proportion of groundwater supply, and the per capita water consumption. Furthermore, the interaction among these factors results in a synergistic effect that enhances the coupling coordination degree.

Key words: water resources, planting structure, coupling coordination degree, spatial and temporal differences, driving factors

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