Numerical Simulation of the Airflow within a Canopy Using a 3D Canopy Structure

被引:0
|
作者
王冰清 [1 ]
付海明 [2 ]
机构
[1] College of Environmental Science and Engineering,Donghua University
[2] State Environmental Protection Textile Pollution Control Engineering Technology Center,Donghua University
基金
中国国家自然科学基金;
关键词
airflow modelling; computational fluid dynamics(CFD); canopy architecture; microcosmic model(MM);
D O I
10.19884/j.1672-5220.2016.06.016
中图分类号
S758 [森林计测学(测树学)];
学科分类号
090704 ;
摘要
Canopy architecture of windbreaks is vital in agriculture,meteorological and ecological applications.In this study,computational fluid dynamics(CFD) and field experiments were used to investigate the flow characteristics and flow resistance through vegetation canopies with several different leaf area densities(L).Compared with traditional modelling approaches,the present model introduced 3D architecture of the tree that contained a hard trunk,branches and artificial leaves to model the effect of leaves and the other parts of the canopy on airflow.Visual basic application(VBA) produced the 3D architecture of canopy.Simulations were made with the full closure model(FCM) and microcosmic model(MM).Canopies L,used in the simulations were7.76,18.12 and 25.89 m.The objectives of this paper are to analyze the contour of velocity(U) and turbulent kinetic energy(k)of two models in different leaf area densities,comparing the simulation results with experimental data/other works and investigate the real effects of the canopy on the airflow distribution.Results are encouraging,compared with the FCM,V and k of MM profiles qualitatively agree better with other works.Therefore,the model and method are recommended for future use in simulating turbulent flows in forest canopies.
引用
下载
收藏
页码:920 / 927
页数:8
相关论文
共 50 条
  • [21] The Impact of Canopy Feflectance on the 3D Structure of Individual Trees in a Mediterranean Forest
    Jurado, J. M.
    Ramos, M., I
    Enriquez, C.
    Feito, E. R.
    REMOTE SENSING, 2020, 12 (09)
  • [22] 3D lidar imaging for detecting and understanding plant responses and canopy structure
    Omasa, K.
    Hosoi, F.
    Konishi, A.
    COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY A-MOLECULAR & INTEGRATIVE PHYSIOLOGY, 2006, 143 (04): : S147 - S148
  • [23] 3D lidar imaging for detecting and understanding plant responses and canopy structure
    Omasa, Kenji
    Hosoi, Fumiki
    Konishi, Atsumi
    JOURNAL OF EXPERIMENTAL BOTANY, 2007, 58 (04) : 881 - 898
  • [24] Canopy height uniformity: a new 3D phenotypic indicator linking individual plant to canopy
    Chang, Wushuai
    Wen, Weiliang
    Gu, Shenghao
    Li, Yinglun
    Fan, Jiangchuan
    Lu, Xianju
    Chen, Bo
    Xu, Tianjun
    Wang, Ronghuan
    Guo, Xinyu
    Li, Ruiqi
    Computers and Electronics in Agriculture, 2024, 227
  • [25] DIRECTIONAL SIMULATION OF THERMAL INFRARED RADIATION AND 3D RADIATIVE TRANSFER MODEL OF CANOPY
    Yang Gui-Jun
    Liu Qin-Huo
    Liu Qiang
    Xiao Qing
    Huang Wen-Jiang
    JOURNAL OF INFRARED AND MILLIMETER WAVES, 2010, 29 (01) : 38 - 44
  • [26] Dynamic simulation of leaf area index for the soybean canopy based on 3D reconstruction
    Wei, Bingxue
    Ma, Xiaodan
    Guan, Haiou
    Yu, Miao
    Yang, Chen
    He, Haotian
    Wang, Feiyi
    Shen, Panpan
    ECOLOGICAL INFORMATICS, 2023, 75
  • [27] Cotton canopy airflow simulation and velocity attenuation model based upon 3D phenotype and stratified sub-regional porous medium
    Cui, Huiyuan
    Wang, Chengde
    Liu, Xuemei
    Yuan, Jin
    Liu, Yichong
    Song, Laiqi
    Computers and Electronics in Agriculture, 2022, 201
  • [28] Cotton canopy airflow simulation and velocity attenuation model based upon 3D phenotype and stratified sub-regional porous medium
    Cui, Huiyuan
    Wang, Chengde
    Liu, Xuemei
    Yuan, Jin
    Liu, Yichong
    Song, Laiqi
    COMPUTERS AND ELECTRONICS IN AGRICULTURE, 2022, 201
  • [29] Simulation of within-canopy radiation exchange
    Flerchinger, G. N.
    Xiao, W.
    Sauer, T. J.
    Yu, Q.
    NJAS-WAGENINGEN JOURNAL OF LIFE SCIENCES, 2009, 57 (01) : 5 - 15
  • [30] Monte Carlo Simulation of Grass Canopy's Radiation Transfer using 3D Plant Architecture Model
    Sun, Yuan
    Gu, Xingfa
    Yu, Tao
    Zhao, Feng
    Qin, Jian
    PROCEEDINGS OF FIRST INTERNATIONAL CONFERENCE OF MODELLING AND SIMULATION, VOL III: MODELLING AND SIMULATION IN ELECTRONICS, COMPUTING, AND BIO-MEDICINE, 2008, : 402 - 407