综合流域洪水风险评估本体的开发

Shanzhen Yi, Yangfan Xiao
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引用次数: 6

摘要

洪水是对人类社会和经济最具威胁的自然灾害,城市化和气候变化加剧了洪水的威胁。综合评估被定义为一个跨学科和参与性的过程,将来自不同科学学科的知识结合、整合、解释和交流,以更好地理解复杂现象。本体作为一种形式化的知识表示,将为跨学科综合洪水评估提供方法。本文将从不同的流域洪水风险感知模型出发,构建集成的流域洪水风险评估本体。首先介绍了不同的概念模型,如压力-状态-冲击-响应模型。然后给出了本体的开发框架。洪水风险评估本体是在地球与环境术语语义网(SWEET)上层本体的基础上设计的。最后给出了降雨过剩指标计算本体和漏洞指标计算本体作为应用开发实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The development of integrated watershed flood risk assessment ontology
Floods belong to the most threatening natural hazards for human society and economics, and are enhanced by urbanization and climate change. Integrated assessment is defined as an interdisciplinary and participatory process of combining, integration, interpreting, and communicating knowledge from diverse scientific disciplines to allow a better understanding of complex phenomena. Ontology, as a formal knowledge representation, will provide methods for the interdisciplinary integrated flood assessment. This paper will develop integrated watershed flood risk assessment ontology from different perceptual models of watershed flood risk. First, different conceptual models, such as Pressure-State-Impact-Response model, are introduced. Then the development framework of ontology is given. The flood risk assessment ontology is designed based on the upper level ontology of Semantic Web for Earth and Environmental Terminology (SWEET). Finally the rainfall excess indicator computing ontology and vulnerability index computing ontology were given as the examples of application development.
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