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基于数值模拟的黄河下游不同情景溃堤洪水特性
引用本文:马欣,杨佩国,杨勤业,康相武,夏富强.基于数值模拟的黄河下游不同情景溃堤洪水特性[J].地理学报(英文版),2007,17(1):85-100.
作者姓名:马欣  杨佩国  杨勤业  康相武  夏富强
作者单位:[1]Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China [2]Graduate School of the Chinese Academy of Sciences, Beijing 100039, China [3]Institute of Scientific and Technical Information of China, Beijing 100038, China
基金项目:Foundation: The State Scientific Research Plan, No.96-920-09-01.Acknowledgments: We thank Mr. Lu J. K., the Chief Engineer in Department of Water Hazard Research, China Institute of Water Resources and Hydropower Research gave us some help in the flood routing simulation.
摘    要:The lower Yellow River still faces the threat of flood due to the unusual precipitation caused by global environmental change, river channel sedimentation, hidden danger in the dike and unfavorable river regime of "hanging river". According to the characteristics of the dike-break flood of the Yellow River, this paper has simulated, in six different scenarios, the dike-break flood routing by inputting the terrain data, typical historical flood data and land use data of study area to two-dimensional unsteady flow model. The results show that: firstly, the routing process of flood will occupy other rivers on the way and return to the rivers after reaching the lower reaches; secondly, in the same river reach, flood inundating area of north band is bigger than that at corresponding location of south bank under the same historical flood; thirdly, it is different in the degree of flood inundation in different regions due to different geographical locations in flood plain; fourthly, the area of mainstream where flood is deep and flow velocity is quick is relatively smaller, but the area of non-mainstream, where flood is shallow and flow velocity is slow, is relatively big; and finally, the possible influenced area of the dike-break flood is 141,948 km^2.

关 键 词:堤防破损  洪水  黄河  模拟技术
收稿时间:19 October 2006
修稿时间:2006-10-192006-11-26

The characteristics of dike-break flood in different scenarios of the lower Yellow River based on numerical simulations
Ma Xin,Yang Peiguo,Yang Qinye,Kang Xiangwu,Xia Fuqiang.The characteristics of dike-break flood in different scenarios of the lower Yellow River based on numerical simulations[J].Journal of Geographical Sciences,2007,17(1):85-100.
Authors:Ma Xin  Yang Peiguo  Yang Qinye  Kang Xiangwu  Xia Fuqiang
Institution:1. Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China|; 2. Graduate School of the Chinese Academy of Sciences, Beijing 100039, China|; 3. Institute of Scientific and Technical Information of China, Beijing 100038, China
Abstract:The lower Yellow River still faces the threat of flood due to the unusual precipitation caused by global environmental change, river channel sedimentation, hidden danger in the dike and unfavorable river regime of “hanging river”. According to the characteristics of the dike-break flood of the Yellow River, this paper has simulated, in six different scenarios, the dike-break flood routing by inputting the terrain data, typical historical flood data and land use data of study area to two-dimensional unsteady flow model. The results show that: firstly, the routing process of flood will occupy other rivers on the way and return to the rivers after reaching the lower reaches; secondly, in the same river reach, flood inundating area of north band is bigger than that at corresponding location of south bank under the same historical flood; thirdly, it is different in the degree of flood inundation in different regions due to different geographical locations in flood plain; fourthly, the area of mainstream where flood is deep and flow velocity is quick is relatively smaller, but the area of non-mainstream, where flood is shallow and flow velocity is slow, is relatively big; and finally, the possible influenced area of the dike-break flood is 141,948 km2. Foundation: The State Scientific Research Plan, No.96-920-09-01 Author: Ma Xin (1980–), Ph.D. Candidate, specialized in environment and resource.
Keywords:lower Yellow River  dike-break  2-dimensional unsteady flow model  characteristics of the flood routing
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