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Synthesis of System Dynamics Tools for Holistic Conceptualization of Water Resources Problems

机译:全面解决水资源问题的系统动力学工具的综合

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摘要

Out-of-context analysis of water resources systems can result in unsustainable management strategies. To address this problem, systems thinking seeks to understand interactions among the subsystems driving a system's overall behavior. System dynamics, a method for operationalizing systems thinking, facilitates holistic understanding of water resources systems, and strategic decision making. The approach also facilitates participatory modeling, and analysis of the system's behavioral trends, essential to sustainable management. The field of water resources has not utilized the full capacity of system dynamics in the thinking phase of integrated water resources studies. We advocate that the thinking phase of modeling applications is critically important, and that system dynamics offers unique qualitative tools that improve understanding of complex problems. Thus, this paper describes the utility of system dynamics for holistic water resources planning and management by illustrating the fundamentals of the approach. Using tangible examples, we provide an overview of Causal Loop and Stock and Flow Diagrams, reference modes of dynamic behavior, and system archetypes to demonstrate the use of these qualitative tools for holistic conceptualization of water resources problems. Finally, we present a summary of the potential benefits as well as caveats of qualitative system dynamics for water resources decision making.
机译:水资源系统的上下文外分析可能导致不可持续的管理策略。为了解决这个问题,系统思考试图理解驱动系统整体行为的子系统之间的相互作用。系统动力学是一种用于实现系统思维的方法,有助于对水资源系统的整体理解和战略决策。该方法还有助于参与性建模和对系统行为趋势的分析,这对于可持续管理至关重要。在水资源综合研究的思考阶段,水资源领域尚未充分利用系统动力学的全部能力。我们主张建模应用程序的思考阶段至关重要,并且系统动力学提供了独特的定性工具,可提高对复杂问题的理解。因此,本文通过阐述该方法的基本原理,描述了系统动力学在整体水资源规划和管理中的效用。我们使用有形的例子概述因果循环,存量和流程图,动态行为的参考模式以及系统原型,以演示如何使用这些定性工具对水资源问题进行整体概念化。最后,我们总结了水资源决策的潜在利益以及定性系统动力学的警告。

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