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河道、滞洪区洪水演进数学模型
引用本文:李大鸣,林毅,徐亚男,周志华. 河道、滞洪区洪水演进数学模型[J]. 天津大学学报(自然科学与工程技术版), 2009, 42(1): 47-55
作者姓名:李大鸣  林毅  徐亚男  周志华
作者单位:李大鸣,林毅,徐亚男,LI Da-ming,LIN Yi,XU Ya-nan(天津大学建筑工程学院港口与海洋工程教育部重点实验室,天津,300072);周志华,ZHOU Zhi-hua(天津市水利科学研究所,天津,300061)  
摘    要:采用有限体积法建立了适应河道、滞洪区复杂情况的洪水演进一、二维衔接数学模型构造了适合河道洪水计算的一、二维河道型网格和滞洪区二维地面型网格,网格具有多点、多面,既镶嵌又衔接的特点阻水建筑物对洪水演进速度影响较大,所以,将其模化成特殊通道,提出了洪水演进过程中渗流所造成的水体损失的计算模式.将该模型应用于大清河滞洪区,讨论了洪水边界条件,确定了模型糙率,率定了模型渗流参数.结合大清河“96.8实测洪水资料”进行了洪水演进数值模拟,分别对河道的水位、流量和滞洪区来水时间进行了模型验证,验证结果基本吻合.

关 键 词:滞洪区  洪水演进  一、二维衔接数学模型  有限体积法  渗流

Numerical Model of Flood Propagation of Rivers and Flood Detention Basin
LI Da-ming,LIN Yi,XU Ya-nan,ZHOU Zhi-hua. Numerical Model of Flood Propagation of Rivers and Flood Detention Basin[J]. Journal of Tianjin University(Science and Technology), 2009, 42(1): 47-55
Authors:LI Da-ming  LIN Yi  XU Ya-nan  ZHOU Zhi-hua
Affiliation:LI Da-ming, LIN Yi, XU Ya-nan, ZHOU Zhi-hua ( 1. Key Laboratory of Harbor and Ocean Engineering of Ministry of Education, School of Civil Engineering, Tianjin University, Tianjin 300072, China; 2. Tianjin Water Conservancy Scientific Research Institute, Tianjin 300061, China)
Abstract:The 1D and 2D numerical combination model adapted to the complicated situation of flood propagation of rivers and flood detention area was built by finite volume method (FVM) .The model grids included the river grid and ground grid, which connected each other point to point and face to face. By modeling blocking building to special channel, the numerical mode for the water loss of seepage was suggested. The model was applied to Daqinghe detention basin, in which flood boundary conditions were discussed, the roughness of model was confirmed, and seepage coefficient was rated. The propagation of the diversion flood in Daqinghe detention basin in August, 1996 was simulated successfully and the model verification results were satisfactory, which contained the verification results of water level, flow in rivers and water reaching time in detention basin.
Keywords:flood detention area  flood propagation  1D and 2D numerical combination model  finite volume method  seepage
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