Numerical simulation of buoyant plume dispersion in a stratified atmosphere using a Lagrangian Stochastic Model

被引:0
|
作者
Kim, HG [1 ]
Noh, YJ
Lee, CM
Choi, DB
机构
[1] Res Inst Ind Sci & Technol, Pohang 790330, South Korea
[2] Florida State Univ, Dept Meteorol, Tallahassee, FL 32306 USA
[3] Pohang Univ Sci & Technol, Pohang 790784, Kyungbuk, South Korea
来源
KSME INTERNATIONAL JOURNAL | 2003年 / 17卷 / 03期
关键词
buoyant plume dispersion; Lagrangian Stochastic Model (LSM); Non-Linear Eddy Viscosity Model (NLEVM);
D O I
10.1007/BF02984370
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
In the present paper, numerical simulations of buoyant plume dispersion in a neutral and stable atmospheric boundary layer have been carried out. A Lagrangian Stochastic Model (LSM) with a Non-Linear Eddy Viscosity Model (NLEVM) for turbulence is used to generate a Reynolds stress field as an input condition of dispersion simulation. A modified plume-rise equation is included in dispersion simulation in order to consider momentum effect in an initial stage of plume rise resulting in an improved prediction by comparing with the experimental data. The LSM is validated by comparing with the prediction of an Eulerian Dispersion Model (EDM) and by the measured results of vertical profiles of mean concentration in the downstream of an elevated source in an atmospheric boundary layer. The LSM predicts accurate results especially in the vicinity of the source where the EDM underestimates the peak concentration by 40% due to inherent limitations of gradient diffusion theory. As a verification study, the LSM simulation of buoyant plume dispersions under a neutral and stable atmospheric condition is compared with a wind-tunnel experiment, which shows good qualitative agreements.
引用
收藏
页码:440 / 448
页数:9
相关论文
共 50 条
  • [41] QES-Plume v1.0: a Lagrangian dispersion model
    Margairaz, Fabien
    Singh, Balwinder
    Gibbs, Jeremy A.
    Atwood, Loren
    Pardyjak, Eric R.
    Stoll, Rob
    [J]. GEOSCIENTIFIC MODEL DEVELOPMENT, 2023, 16 (20) : 5729 - 5754
  • [42] Parallel implementation of a Lagrangian stochastic model for pollution dispersion
    Roberti, DR
    Souto, RP
    Velho, HFD
    Degrazia, GA
    Anfossi, D
    [J]. 16TH SYMPOSIUM ON COMPUTER ARCHITECTURE AND HIGH PERFORMANCE COMPUTING, PROCEEDINGS, 2004, : 142 - 149
  • [43] A Lagrangian stochastic model of surf zone drifter dispersion
    Spydell, Matthew S.
    Feddersen, Falk
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 2012, 117
  • [44] A Lagrangian stochastic model for the dispersion and deposition of Brownian particles
    Reynolds, AM
    [J]. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1999, 217 (02) : 348 - 356
  • [45] Parallel implementation of a Lagrangian stochastic model for pollutant dispersion
    Roberti, DR
    Souto, RP
    Velho, HFD
    Degrazia, GA
    Anfossi, D
    [J]. INTERNATIONAL JOURNAL OF PARALLEL PROGRAMMING, 2005, 33 (05) : 485 - 498
  • [46] Parallel Implementation of a Lagrangian Stochastic Model for Pollutant Dispersion
    Debora R. Roberti
    Roberto P. Souto
    Haroldo F. Campos de Velho
    Gervasio A. Degrazia
    Domenico Anfossi
    [J]. International Journal of Parallel Programming, 2005, 33 : 485 - 498
  • [47] A Lagrangian dispersion model with a stochastic equation for the temperature fluctuations
    Bisignano, Andrea
    Ferrero, Enrico
    Alessandrini, Stefano
    [J]. INTERNATIONAL JOURNAL OF ENVIRONMENT AND POLLUTION, 2019, 65 (04) : 311 - 324
  • [48] Numerical simulation on turbulent buoyant jets in a cross-flow of stratified fluids
    Hwang, RR
    Chiang, TP
    [J]. ENVIRONMENTAL HYDRAULICS, 1999, : 109 - 115
  • [49] Numerical simulation of vertical forced plume in a crossflow of stably stratified fluid
    Hwang, RR
    Chiang, TP
    [J]. JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 1995, 117 (04): : 696 - 705
  • [50] Numerical Simulation of Vertical Buoyant Wall Jet Discharged into a Linearly Stratified Environment
    Zhang, Zhiyong
    Guo, Yakun
    Zeng, Jian
    Zheng, Jinhai
    Wu, Xiuguang
    [J]. JOURNAL OF HYDRAULIC ENGINEERING, 2018, 144 (07)