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Identifying Capabilities and Potentials of System Dynamics in Hydrology and Water Resources as a Promising Modeling Approach for Water Management

机译:识别水文和水资源中系统动力学的能力和潜力,作为水资源管理的有希望的建模方法

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摘要

Agriculture is the most important sector with regard to water resources management due to its social, economic, hydrological, and environmental aspects, and many scholars and researchers have been driven to investigate the dynamic interrelationships among hydrological, environmental, and socioeconomic factors affecting agriculture. The system dynamics (SD) approach has become widely used because of its merits and benefits as a tool to deal with complex, dynamic problems and systems with many aspects and components that are involved and must be understood to ensure sound decisions regarding water and hydrological systems. Although agricultural water management needs to be studied as a main part of water management, socioeconomic management, and environmental management requiring the use of SD, this review shows that SD is currently used to a limited extent in terms of agricultural water management. This paper sheds light on the studies and investigations on the use of SD in the water sector and highlights the strengths of SD in order to encourage researchers to use this promising method to manage such a vital resource. Accordingly, this review seeks to include a comprehensive and up-to-date survey of existing publications and scholarly papers on the use of SD modeling as an effective technique for dealing with different problems associated with planning, management, and analysis of hydrology and water resources systems. Recent trends in the integration of SD with other modeling systems, such as artificial intelligence systems, are discussed along with the limitations and challenges facing application. This article makes a new contribution by giving a foundation of references and studies for scholars, researchers, and academics which encourages future investigation in employing the SD approach to hydrology and water resources management and planning, especially with agricultural water.
机译:由于其社会,经济,水文和环境方面,农业是在水资源管理方面最重要的部门,而且许多学者和研究人员已经被驱使了影响影响农业的水文,环境和社会经济因素的动态相互关系。系统动态(SD)方法已被广泛使用,因为它作为处理复杂,动态问题和系统的工具的优点和益处,必须理解为确保有关水和水文系统的声音决策。虽然需要将农业水管理作为水资源管理的主要部分,但需要使用SD的社会经济管理和环境管理,但该综述表明,SD目前在农业水管理方面有限地习惯了有限的程度。本文阐明了在水部门使用SD的研究和调查,并突出了SD的优势,以鼓励研究人员使用这一有希望的方法来管理这种重要资源。因此,该审查旨在包括对现有出版物和学术文件的全面和最新调查,即使用SD建模作为处理与水文和水资源分析相关的不同问题的有效技术系统。与其他建模系统相结合的最新趋势,例如人工智能系统,以及应用面临的局限性和挑战。本文通过为学者,研究人员和学者提供参考和研究的基础,这是鼓励雇用SD水文和水资源管理和规划,特别是在农业水中的进下来调查的基础。

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