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Efficient GIS-based model-driven method for flood risk management and its application in central China

机译:基于GIS的高效模型驱动洪水风险管理方法及其在华中地区的应用。

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In recent years, an important development in flood management has been the focal shift from flood protection towards flood risk management. This change greatly promoted the progress of flood control research in a multidisciplinary way. Moreover, given the growing complexity and uncertainty in many decision situations of flood risk management, traditional methods, e.g., tight-coupling integration of one or more quantitative models, are not enough to provide decision support for managers. Within this context, this paper presents a beneficial methodological framework to enhance the effectiveness of decision support systems, through the dynamic adaptation of support regarding the needs of the decision-maker. In addition, we illustrate a loose-coupling technical prototype for integrating heterogeneous elements, such as multi-source data, multidisciplinary models, GIS tools and existing systems. The main innovation is the application of model-driven concepts, which put the system in a state of continuous iterative optimization. We define the new system as a model-driven decision support system (MDSS). Two characteristics that differentiate the MDSS are as follows: (1) it is made accessible to non-technical specialists; and (2) it has a higher level of adaptability and compatibility. Furthermore, the MDSS was employed to manage the flood risk in the Jingjiang flood diversion area, located in central China near the Yangtze River. Compared with traditional solutions, we believe that this model-driven method is efficient, adaptable and flexible, and thus has bright prospects of application for comprehensive flood risk management.
机译:近年来,洪水管理的一个重要发展是从防洪转向洪水风险管理。这一变化极大地促进了防洪研究的多学科化。此外,由于洪水风险管理的许多决策情况越来越复杂且不确定,使用传统方法(例如,一个或多个量化模型的紧密耦合集成)不足以为管理人员提供决策支持。在此背景下,本文提出了一个有益的方法框架,可通过动态调整对决策者需求的支持来增强决策支持系统的有效性。此外,我们还演示了一种松耦合技术原型,用于集成异构元素,例如多源数据,多学科模型,GIS工具和现有系统。主要的创新是模型驱动概念的应用,这使系统处于连续迭代优化的状态。我们将新系统定义为模型驱动的决策支持系统(MDSS)。区分MDSS的两个特征如下:(1)非技术专家可以使用它; (2)具有较高的适应性和兼容性。此外,MDSS被用于管理位于中国中部,长江附近的靖江分洪区的洪水风险。与传统解决方案相比,我们认为这种模型驱动的方法是高效,适应性强和灵活的,因此在全面洪水风险管理中具有广阔的应用前景。

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