Real-time prediction of urban flow and dispersion

被引:5
作者
Nam, Jaewook [1 ]
Lee, Changhoon [1 ,2 ]
机构
[1] Yonsei Univ, Sch Math & Comp, Seoul 03722, South Korea
[2] Yonsei Univ, Dept Mech Engn, Seoul 03722, South Korea
关键词
Immersed boundary method; Large-eddy simulation; Real-time prediction; Synthetic-eddy method; FIELD POLLUTANT DISPERSION; IMMERSED BOUNDARY METHOD; TURBULENT; SIMULATIONS; MODEL;
D O I
10.1007/s12206-021-0926-0
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
We propose a CFD algorithm for real-time prediction of urban flow and dispersion based on large-eddy simulation (LES). To efficiently handle complex urban building geometry, we implement a modified immersed boundary method (IBM), which can be applied to bluff building boundary on a staggered grid. For an introduction of proper inflow condition, we apply a synthetic-eddy method to the periodic domain, which is necessary for direct solving of Poisson equation for pressure. All these implementations are conducted on GPU system for a significant reduction of calculation time for real-time prediction. For validation of our algorithm, we test our model in the prediction of flow and dispersion in urban area in Seoul against wind-tunnel experiment result and other simulation using fire dynamics simulator (FDS). Our model simulation results of flow and dispersion show good agreement with them. Simulation time is reasonably short to warrant real-time prediction of flow and dispersion.
引用
收藏
页码:4565 / 4574
页数:10
相关论文
共 24 条
  • [1] How tall buildings affect turbulent air flows and dispersion of pollution within a neighbourhood
    Aristodemou, Elsa
    Boganegra, Luz Maria
    Mottet, Laetitia
    Pavlidis, Dimitrios
    Constantinou, Achilleas
    Pain, Christopher
    Robins, Alan
    ApSimon, Helen
    [J]. ENVIRONMENTAL POLLUTION, 2018, 233 : 782 - 796
  • [2] Large-Eddy Simulation of Dispersion from Surface Sources in Arrays of Obstacles
    Boppana, V. B. L.
    Xie, Zheng-Tong
    Castro, Ian P.
    [J]. BOUNDARY-LAYER METEOROLOGY, 2010, 135 (03) : 433 - 454
  • [3] An immersed boundary method for complex incompressible flows
    Choi, Jung-Il
    Oberoi, Roshan C.
    Edwards, Jack R.
    Rosati, Jacky A.
    [J]. JOURNAL OF COMPUTATIONAL PHYSICS, 2007, 224 (02) : 757 - 784
  • [4] Equations for the Drag Force and Aerodynamic Roughness Length of Urban Areas with Random Building Heights
    Crago, Richard D.
    Okello, Winnie
    Jasinski, Michael F.
    [J]. BOUNDARY-LAYER METEOROLOGY, 2012, 145 (03) : 423 - 437
  • [5] A Statistical Model for the Prediction of Wind-Speed Probabilities in the Atmospheric Surface Layer
    Efthimiou, G. C.
    Hertwig, D.
    Andronopoulos, S.
    Bartzis, J. G.
    Coceal, O.
    [J]. BOUNDARY-LAYER METEOROLOGY, 2017, 163 (02) : 179 - 201
  • [6] Near-field pollutant dispersion in an actual urban area: Analysis of the mass transport mechanism by high-resolution Large Eddy Simulations
    Gousseau, P.
    Blocken, B.
    Stathopoulos, T.
    van Heijst, G. J. F.
    [J]. COMPUTERS & FLUIDS, 2015, 114 : 151 - 162
  • [7] CFD simulation of near-field pollutant dispersion on a high-resolution grid: A case study by LES and RANS for a building group in downtown Montreal
    Gousseau, P.
    Blocken, B.
    Stathopoulos, T.
    van Heijst, G. J. F.
    [J]. ATMOSPHERIC ENVIRONMENT, 2011, 45 (02) : 428 - 438
  • [8] Multi-level parallelism for incompressible flow computations on GPU clusters
    Jacobsen, Dana A.
    Senocak, Inanc
    [J]. PARALLEL COMPUTING, 2013, 39 (01) : 1 - 20
  • [9] Modification of turbulence and stratification of stably stratified turbulent channel flows by finite-size particles
    Jang, Juwon
    Lee, Changhoon
    [J]. PHYSICAL REVIEW FLUIDS, 2018, 3 (12):
  • [10] An immersed boundary method for nonuniform grids
    Jang, Juwon
    Lee, Changhoon
    [J]. JOURNAL OF COMPUTATIONAL PHYSICS, 2017, 341 : 1 - 12