期刊文献+

基于建筑密度系数的二维城市洪水数值模拟 被引量:4

A Two-dimensional Numerical Model of Urban Flood Based on Building Density Coefficient
在线阅读 下载PDF
导出
摘要 城市密集建筑群的存在对城市洪水演进有很大影响,而根据建筑物的尺寸和高程采用高分辨率网格进行逐渐构建的方法在大范围洪水数值模拟中有一定的局限性。因此,如何高效模拟出建筑群在洪水中的影响对城市洪灾风险评估至关重要。在浅水方程中引入了建筑密度系数以反映建筑群对城市洪水运动的影响,并建立二维城市洪水数值模型。模型采用中心迎风格式计算界面通量,并对界面两侧变量进行线性重构,使其在空间上有二阶精度。为保证模型的和谐性和稳定性,底床坡度项采用中心差分法离散,底床摩擦项和局部水头损失项用半隐式法离散。当库朗特数满足条件时,模型能保证计算水深在任何时刻是非负的。算例分析表明,模型在计算中可以将建筑群区域视为一个整体,受网格疏密制约较小。在计算精度相近的情况下,计算需时约为高分辨率网格法的1/50,能够简便、高效地模拟洪水在城市建筑群中演进的过程。 Dense buildings in modern city usually have a great influence on urban flood propagation,and the use of high resolution meshes to distinguish the buildings based on their actual size and elevation in large-scale urban flood simulation is often limited by the computational time.It is important to efficiently simulate the effect of buildings on flood propagation in the risk assessment of urban flood.In this paper,a two-dimensional numerical model of urban flood is established by introducing the Building Density Coefficient (BDC)in the shallow water equation to reflect the influence of buildings on the urban flood propagation.In the model,a central-upwind scheme is used to calcu-late the flux across the interface of computational mesh and the linear reconstruction of flow variables is adopted to achieve the second-order accuracy in space.A central difference method is used to discretize the bed slope source term to maintain the well-balanced property.The friction source term and local head loss term are calculated using a semi-implicit method to ensure the stability of model.The model can guarantee the positivity of water depth when the Courant number meets certain condition,which means there is no need to treat negative water depth problem. The simulated result shows that the established numerical model with BDC can deal with the building area as a whole zone and is not restricted by the grid size,which greatly shortens the computational time to 1 /50 of that using high resolution method with good accuracy.
出处 《长江科学院院报》 CSCD 北大核心 2015年第7期22-28,共7页 Journal of Changjiang River Scientific Research Institute
基金 国家自然科学基金(41376095) 长沙矿山研究院国家重点实验室开发基金(12529001022)
关键词 洪水演进 城市建筑群 建筑密度系数 有限体积法 数值模拟 flood routing urban buildings building density coefficient finite volume method numerical simulation
作者简介 翁浩轩(1989-),男,浙江兰溪人,硕士研究生,主要从事泥沙水动力研究,(电话)15957186716,(电子信箱)wenghaoxuan.2008@163.com。通讯作者:吴钢锋(1988-),男,浙江东阳人,博士研究生,从事计算水动力学研究,(电话)13456766951,(电子信箱)zjdxwgf@gmail.com。
  • 相关文献

参考文献16

  • 1SOARES-FRAZO S, ZECH Y. Dam-break Flow Through an Idealised City[J]. Journal of Hydraulic Research, 2008, 46(5): 648-658.
  • 2周建康,黄红虎,唐运忆,朱红耕.城市化对南京市区域降水量变化的影响[J].长江科学院院报,2003,20(4):44-46. 被引量:44
  • 3陈杰,张爱丽,孙蕊蕊,周龙.清林径水库溃坝水流在深圳城区的演进数值模拟[J].广东水利水电,2012(5):1-4. 被引量:3
  • 4TESTA G, ZUCCAL D, ALCRUDO F, et al. Flash Flood Flow Experiment in a Simplified Urban District[J]. Journal of Hydraulic Research, 2007, 45(Sup.): 37-44.
  • 5DOTTORI F, TODINI E. Testing a Simple 2D Hydraulic Model in an Urban Flood Experiment[J]. Hydrological Processes, 2013, 27(9): 1301-1320.
  • 6KAMAL EL K A, ANDRE′ P, EMMANUEL M. Modelling Flash Flood Propagation in Urban Areas Using a Two-dimensional Numerical Model[J]. Natural Hazards, 2009, 50(3): 433-460.
  • 7BRADBROOK K F, LANE S N, WALLER S G, et al. Two Dimensional Diffusion Wave Modelling of Flood Inundation Using a Simplified Channel Representation[J]. International Journal of River Basin Management, 2004, 2(3): 211-224.
  • 8VILLANUEVA I, WRIGHT N G. Linking Riemann and Storage Cell Models for Flood Prediction[J]. Water Management, 2006, 159(1): 27-33.
  • 9解以扬,李大鸣,李培彦,沈树勤,殷剑敏,韩素芹,曾明剑,辜晓青.城市暴雨内涝数学模型的研究与应用[J].水科学进展,2005,16(3):384-390. 被引量:94
  • 10SOARES-FRAZO S, LHOMME J, GUINOT V, et al. Two-dimensional Shallow-water Model with Porosity for Urban Flood Modeling[J]. Journal of Hydraulic Research, 2008, 46(1): 45-64.

二级参考文献20

  • 1解以扬,李大鸣,李培彦,沈树勤,殷剑敏,韩素芹,曾明剑,辜晓青.城市暴雨内涝数学模型的研究与应用[J].水科学进展,2005,16(3):384-390. 被引量:94
  • 2杨土弘 廖重斌 郑宗清.城市生态环境学[M].北京:科学出版社,1997..
  • 3AUDUSSE E, BOUCHUT F, BRISTEAU M, et al. A fast and stable well-balanced scheme with hydrostatic reconstruction for shal- low water flows [ J]. SIAM Journal on Scientific Computing, 2004, 25 (6) : 2050-2065.
  • 4DEFINA A, D' ALPAOS L, MATTICHIO B. A new set of equations for very shallow water and partially dry areas suitable to 2D nu-merical domains [ C ]//Proceedings Specialty Conference: Modelling of Flood Propagation over Initially Dry Areas. Reston: American Society of Civil Engineers, 1994.
  • 5HERVOUET J M, SAMIE R, MOREAU B. Modelling urban areas in dam-break flood-wave numerical simulations[ C ]//Proceed- ings of the International Seminar and Workshop on Rescue Actions Based on Dambreak Flow Analysis. Hoboken: John Wiley & Sons, 2000.
  • 6GUINOT V, SOARES-FRAZAO S. Flux and source term discretization in two-dimensional shallow water models with porosity on un- structured grids [ J ]. International Journal for Numerical Methods in Fluids, 2006, 50(3) : 309-345.
  • 7LHOMME J, SOARES-FRAZAO S, GUINOT V, et al. Large-scale urban floods modeling and two-dimensional shallow water models with porosity[ C]//7th international conference on hydroinformatics. Singapore: Research Publishing Services, 2006.
  • 8SOARES-FRAZAO S, LHOMME J, GUINOT V, et al. Two-dimensional shallow-water model with porosity for urban flood modeling [ J]. Journal of Hydraulic Research, 2008, 46( 1 ) : 45-64.
  • 9David A. Ham Julie Pietrazk and Guus S. Stelling. A scala- ble unstructured grid 3 - dimensional finite volume model for the shallow water equations [ J ]. Ocean modeling, 2005, (10): 153 -159.
  • 10Zhengang Wang, David S. bowles. Three - dimensional non -cohesive earthen dam breach model [ J]. Advances in Wa- ter Resources, 2006, (29) : I 528 - 1 545.

共引文献148

同被引文献33

引证文献4

二级引证文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部