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尾闾河道及海域整体冲淤数学模型研究
引用本文:王崇洁,张世奇,曹文洪.尾闾河道及海域整体冲淤数学模型研究[J].水利学报,2007,38(6):654-660.
作者姓名:王崇洁  张世奇  曹文洪
作者单位:中国水利水电科学研究院,泥沙研究所,北京,100044
摘    要:针对黄河下游水少沙多和河口淤积延伸速度快的特点,本文建立了一套包括一维河道和二维海域、适用于多沙河口的整体泥沙冲淤数学模型。模型建立在高含沙的不平衡输沙理论上,采用动边界和动床阻力技术,模型可同时考虑径流、潮流及波浪等多种动力因素共同作用,可用于尾闾河道冲淤、河口泥沙输移扩散和河口演变计算。本文 应用二维模型计算了整个渤海的潮汐过程,得到几个主要分潮的同潮图,计算与实测值符合良好。用1983年汛后至1996年汛前艾山-口门河道地形资料、1996年6~10月和1996年10月~2000年10月的海区地形资料对一、二维连接模型进行了验证。计算结果给出的黄河下游河道的淤积延伸过程、河道水位、河道及海区冲淤量和流路河长延伸等均与实测值基本一致,证实了模型的可靠性。

关 键 词:黄河口  整体数模  高含沙  不平衡输沙
文章编号:0559-9350(2007)06-0654-07
修稿时间:2006-08-07

Integrated model for simulating the sediment transport and river bed evolution in lower reaches of Yellow River in the area of river mouth
WANG Chong hao.Integrated model for simulating the sediment transport and river bed evolution in lower reaches of Yellow River in the area of river mouth[J].Journal of Hydraulic Engineering,2007,38(6):654-660.
Authors:WANG Chong hao
Affiliation:China Institute of Water Resources and Hydropower Research, Beijing 100044, China
Abstract:The integrated model consisted of a 1-D model for describing the evolution of fiver and a 2-D model for calculating the flow and sediment transport in the area of fiver mouth and estuary is developed. The theory for unbalance transportation of hyper-concentrated flow is applied and the techniques of moving boundary and resistance of movable riverbed are adopted. In the model, the sediment transport and evolution of fiver mouth under the combining actions of runoff, tidal current and waves are simultaneously considered. The validity of the tidal flow calculated by the 2-D model is verified by the observation data of the Bohai Sea, and the feasibility of the combination of 1-D model with 2-D model is demonstrated by the existing topography in sea area. The calculated extending process of fiver, variation of fiver water level, sedimentation and erosion in fiver channel and sea area are in good agreement with the observation data.
Keywords:integrated model  sediment transport  riverbed evolution  hyper-concentrated flow  unbalance transportation of sediment
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