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Dynamic Analysis of the Coupling Coordination Relationship between Urbanization and Water Resource Security and Its Obstacle Factor

机译:城市化与水资源安全耦合协调关系及其障碍因素的动态分析。

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摘要

Water resource security is an important condition for socio-economic development. Recently, the process of urbanization brings increasing pressures on water resources. Thus, a good understanding of harmonious development of urbanization and water resource security (WRS) systems is necessary. This paper examined the coordination state between urbanization and WRS and its obstacle factors in Beijing city, utilizing the improved coupling coordination degree (ICCD) model, obstacle degree model, and indicator data from 2008 to 2017. Results indicated that: (1) The coupling coordination degree between WRS and urbanization displayed an overall upward tendency during the 2008–2017 period; the coupling coordination state has changed from an imbalanced state into a good coordination state, experiencing from a high-speed development stage (2008–2010), through a steady growth stage (2010–2014), towards a low-speed growth (2014–2017). (2) In urbanization system, both the social and spatial urbanizations have the greatest obstruction to the development of urbanization-WRS system. The subsystems of pressure and state are the domain obstacle subsystems in WRS system. These results can provide important support for urban planning and water resource protection in the future, and hold great significance for urban sustainable development.
机译:水资源安全是社会经济发展的重要条件。最近,城市化进程给水资源带来了越来越大的压力。因此,有必要对城市化与水资源安全(WRS)系统的协调发展有很好的理解。本文利用改进的耦合协调度(ICCD)模型,障碍度模型和2008年至2017年的指标数据,对北京市城市化与WRS之间的协调状态及其障碍因素进行了研究。结果表明:(1)耦合WRS与城市化之间的协调度在2008-2017年期间总体上呈上升趋势;耦合协调状态已从不平衡状态变为良好的协调状态,经历了高速发展阶段(2008-2010年),稳定增长阶段(2010-2014年)和低速增长阶段(2014-2014年) 2017)。 (2)在城市化系统中,社会化和空间城市化都对城市化-WRS系统的发展产生最大的阻碍。压力和状态子系统是WRS系统中的域障碍子系统。这些结果可为今后的城市规划和水资源保护提供重要支持,对城市可持续发展具有重要意义。

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