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A conceptual socio-hydrological model of the co-evolution of humans and water: case study of the Tarim River basin, western China

机译:人体与水共同进化的概念社会水文模型:中国西部塔里木河流域案例研究

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摘要

The complex interactions and feedbacks between humans and water are critically important issues but remain poorly understood in the newly proposed discipline of socio-hydrology (Sivapalan et al., 2012). An exploratory model with the appropriate level of simplification can be valuable for improving our understanding of the co-evolution and self-organization of socio-hydrological systems driven by interactions and feedbacks operating at different scales. In this study, a simplified conceptual socio-hydrological model based on logistic growth curves is developed for the Tarim River basin in western China and is used to illustrate the explanatory power of such a co-evolutionary model. The study area is the main stream of the Tarim River, which is divided into two modeling units. The socio-hydrological system is composed of four sub-systems, i.e., the hydrological, ecological, economic, and social sub-systems. In each modeling unit, the hydrological equation focusing on water balance is coupled to the other three evolutionary equations to represent the dynamics of the social sub-system (denoted by population), the economic sub-system (denoted by irrigated crop area ratio), and the ecological sub-system (denoted by natural vegetation cover), each of which is expressed in terms of a logistic growth curve. Four feedback loops are identified to represent the complex interactions among different sub-systems and different spatial units, of which two are inner loops occurring within each separate unit and the other two are outer loops linking the two modeling units. The feedback mechanisms are incorporated into the constitutive relations for model parameters, i.e., the colonization and mortality rates in the logistic growth curves that are jointly determined by the state variables of all sub-systems. The co-evolution of the Tarim socio-hydrological system is then analyzed with this conceptual model to gain insights into the overall system dynamics and its sensitivity to the external drivers and internal system variables. The results show a costly pendulum swing between a balanced distribution of socio-economic and natural ecologic resources among the upper and lower reaches and a highly skewed distribution towards the upper reach. This evolution is principally driven by the attitudinal changes occurring within water resources management policies that reflect the evolving community awareness of society to concerns regarding the ecology and environment.
机译:人类和水之间的复杂相互作用和反馈是重点的重要问题,但在新拟议的社会水文学科(SivaPalan等,2012)中仍然仍然清晰。具有适当级别的简化级别的探索模型对于改善我们对由不同尺度运行的交互和反馈驱动的社会水文系统的共同演进和自组织的理解是有价值的。在这项研究中,基于逻辑生长曲线的简化概念社会水文模型是为中国西部的塔里木河流域开发的,用于说明这种共同进化模型的解释力。研究区是塔里木河的主要流,分为两组建模单位。社会水文系统由四个子系统组成,即水文,生态,经济和社会子系统组成。在每个建模单元中,聚焦在水平衡上的水文方程耦合到其他三个进化方程,以表示社会子系统(由群体表示)的动态,经济子系统(由灌溉作物面积比表示),和生态子系统(由天然植被覆盖物表示),其每个都以物流生长曲线表示。识别四个反馈循环以表示不同子系统和不同空间单元之间的复杂交互,其中两个是在每个单独的单元内发生的内环,另一两个是连接两个建模单元的外环。反馈机制结合到模型参数的组成关系中,即逻辑生长曲线中的殖民化和死亡率,这些曲线中的所有子系统的状态变量共同确定。然后通过这种概念模型进行塔林社会水文系统的共同演变,以获得对整个系统动态的见解及其对外部驱动程序和内部系统变量的敏感性。结果表明,上下距离和下游的社会经济和自然生态资源的平衡分布与对上游的高度偏斜分布之间的昂贵的摆动。这种演变主要受水资源管理政策中发生的态度变化,反映了社会对社会和环境的关注的不断变化的社区意识。

著录项

  • 来源
    《Hydrology and Earth System Sciences 》 |2015年第2期| 共20页
  • 作者单位

    Xian Univ Technol Sch Water Resources &

    Hydropower State Key Lab Base Ecohydraul Engn Arid Area Xian 710048 Peoples R China;

    Tsinghua Univ Dept Hydraul Engn State Key Lab Hydrosci &

    Engn Beijing 100084 Peoples R China;

    Cent Univ Finance &

    Econ Sch Math &

    Stat Beijing 100081 Peoples R China;

    Univ Illinois Dept Civil &

    Environm Engn Dept Geog &

    Geog Informat Sci Urbana IL 61801 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文科学(水界物理学) ;
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