道路路障对街道峡谷内污染物扩散的影响

黄远东, 侯人玮, 崔鹏义. 道路路障对街道峡谷内污染物扩散的影响[J]. 环境工程学报, 2018, 12(4): 1135-1147. doi: 10.12030/j.cjee.201709111
引用本文: 黄远东, 侯人玮, 崔鹏义. 道路路障对街道峡谷内污染物扩散的影响[J]. 环境工程学报, 2018, 12(4): 1135-1147. doi: 10.12030/j.cjee.201709111
HUANG Yuandong, HOU Renwei, CUI Pengyi. Influence of roadside barriers on pollutant dispersion within street canyon[J]. Chinese Journal of Environmental Engineering, 2018, 12(4): 1135-1147. doi: 10.12030/j.cjee.201709111
Citation: HUANG Yuandong, HOU Renwei, CUI Pengyi. Influence of roadside barriers on pollutant dispersion within street canyon[J]. Chinese Journal of Environmental Engineering, 2018, 12(4): 1135-1147. doi: 10.12030/j.cjee.201709111

道路路障对街道峡谷内污染物扩散的影响

  • 基金项目:

    国家自然科学基金重点资助项目(51536006)

Influence of roadside barriers on pollutant dispersion within street canyon

  • Fund Project:
  • 摘要: 采用数值模拟,研究不同风向角α (α=0°、45°、90°)及道路屏障位置(中间单路障和两侧双路障)对街道峡谷内机动车尾气污染物扩散的影响。数值模拟采用标准 k-ε 湍流模型且Sct选择0.3时,计算结果与风洞实验结果较好吻合。结果表明,2种路障布置方式可有效降低人行道内污染物浓度,特别是,当α=45°时,污染物浓度最多可降低46.23%。同时,风向角α对街道峡谷内污染物扩散影响较大。当 α=90°时,空气流通不良使得污染程度最为严重,且污染集中在背风侧近地面。单路障比双路障布置对污染物扩散影响更大,前者使污染物主要集中在街道中心背风侧,其他位置浓度明显降低;双路障时仅在一定范围内改善人行道内空气品质,但对街道整体污染物分布影响不大。
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  • [1] 黄欣,符祥文,张元勋,等.针对街道峡谷内部气流场的参数化研究[J].环境工程学报, 2015,9(7):3379-3386
    [2] 张露露,蒋卫兵,张元勋,等.上海市青浦区大气挥发性有机化合物的特征[J].中国环境科学, 2015,35(12):3550-3561
    [3] HALONEN J I, BLANGIARDO M, TOLEDANO M B, et al.Long-term exposure to traffic pollution and hospital admissions in London[J].Environmental Pollution,2016,208:48-57 10.1016/j.envpol.2015.09.051
    [4] 丁亚东, 李宏亮. 我国移动源主要大气污染物排放量的估算[J]. 环境工程学报, 2016, 10(8): 4435-4444 10.12030/j.cjee.201503127
    [5] JEANJEAN A P R, HINCHLIFFE G, MCMULLAN W A, et al.A CFD study on the effectiveness of trees to disperse road traffic emissions at a city scale[J].Atmospheric Environment, 2015, 120:1-14 10.1016/j.atmosenv.2015.08.003
    [6] BALDAUF R.Roadside vegetation design characteristics that can improve local, near-road air quality[J].Transportation Research: Part D Transport & Environment,2017,52:354-361 10.1016/j.trd.2017.03.013
    [7] VENKATRAM A, ISAKOV V, DESHMUKH P, et al.Modeling the impact of solid noise barriers on near road air quality[J].Atmospheric Environment, 2016, 141:462-469 10.1016/j.atmosenv.2016.07.005
    [8] MCNABOLA A.New directions: Passive control of personal air pollution exposure from traffic emissions in urban street canyons[J].Atmospheric Environment, 2010, 44(24): 2940-2941 10.1016/j.atmosenv.2010.04.005
    [9] GALLAGHER J, BALDAUF R, FULLER C H, et al.Passive methods for improving air quality in the built environment: A review of porous and solid barriers[J].Atmospheric Environment, 2015, 120: 61-70 10.1016/j.atmosenv.2015.08.075
    [10] JANHALL S.Review on urban vegetation and particle air pollution:Deposition and dispersion[J].Atmospheric Environment, 2015, 105: 130-137 10.1016/j.atmosenv.2015.01.052
    [11] GROMKE C, JAMARKKATTEL N, RUCK B.Influence of roadside hedgerows on air quality in urban street canyons[J].Atmospheric Environment, 2016, 139: 75–86 10.1016/j.atmosenv.2016.05.014
    [12] 苏军伟, 王乐, 张云伟, 等. 隔声屏障对街道峡谷污染物扩散的影响[J]. 环境工程, 2016, 34(10): 92-97
    [13] MCNABOLA A, BRODERICK B M, GILL L W.A numerical investigation of the impact of low boundary walls on pedestrian exposure to air pollutants in urban street canyons[J].Science of the Total Environment, 2007, 407: 760-769. 10.1016/j.scitotenv.2008.09.036
    [14] GALLAGHER J, GILL L W, MCNABOLA A.Optimizing the use of on-street car parking system as a passive control of air pollution exposure in street canyons by large eddy simulation[J].Atmospheric Environment, 2011, 45(9):1684-1694. 10.1016/j.atmosenv.2010.12.059
    [15] GROMKE C, BUCCOLOERI R, SABATINO S D, et al.Dispersion study in a street canyon with tree planting by means of wind tunnel and numerical investigations:Evaluation of CFD data with experimental data[J].Atmospheric Environment, 2008, 42(37):8640-8650 10.1016/j.atmosenv.2008.08.019
    [16] NING Z, HUDDA N, DAHER N, et al.Impact of roadside noise barriers on particle size distributions and pollutants concentrations near freeways[J].Atmospheric Environment, 2010, 44(26):3118-3127. 10.1016/j.atmosenv.2010.05.033
    [17] TOMINAGA Y, MOCHIDA A, YOSHIE R, et al.AIJ guidelines for practical applications of CFD to pedestrian wind environment around buildings[J].Journal of Wind Engineering & Industrial Aerodynamics, 2008, 96(10/11): 1749–1761 10.1016/j.jweia.2008.02.058
    [18] 陶文铨. 数值传热学[M].2版.西安:西安交通大学出版社, 2010
    [19] TOMINAGA Y, STATHOPOULOS T.Turbulent schmidt numbers for CFD analysis with various types of flowfield[J].Atmospheric Environment, 2007, 41(37): 8091-8099 10.1016/j.atmosenv.2007.06.054
    [20] SNYDER W H.Some Observations of the Influence of Stratification on Diffusion in Building Wakes[M].Oxford: Oxford University Press, 1994
    [21] 《建筑风洞实验指南》研究委员会. 建筑风洞实验指南[M]. 北京: 中国建筑工业出版社, 2011
    [22] 黄远东, 杨舒天, 王守生. 上海世博规划区交通干道污染物对流扩散研究[J]. 环境科学与技术, 2010, 33(12): 144-148.
    [23] GROMKE C, RUCK B.Influence of trees on the dispersion of pollutants in an urban street canyon:Experimental investigation of the flow and concentration field[J].Atmospheric Environment, 2007, 41:3287-3302. 10.1016/j.atmosenv.2006.12.043
    [24] KASTNER P, BERKOWIC R.The influence of street architecture on flow and dispersion in street canyons[J].Meteorology and Atmospheric Physics, 2004, 87(1): 121-131 10.1007/s00703-003-0065-4
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  • 刊出日期:  2018-04-22

道路路障对街道峡谷内污染物扩散的影响

  • 1. 上海理工大学环境与建筑学院,上海 200093
基金项目:

国家自然科学基金重点资助项目(51536006)

摘要: 采用数值模拟,研究不同风向角α (α=0°、45°、90°)及道路屏障位置(中间单路障和两侧双路障)对街道峡谷内机动车尾气污染物扩散的影响。数值模拟采用标准 k-ε 湍流模型且Sct选择0.3时,计算结果与风洞实验结果较好吻合。结果表明,2种路障布置方式可有效降低人行道内污染物浓度,特别是,当α=45°时,污染物浓度最多可降低46.23%。同时,风向角α对街道峡谷内污染物扩散影响较大。当 α=90°时,空气流通不良使得污染程度最为严重,且污染集中在背风侧近地面。单路障比双路障布置对污染物扩散影响更大,前者使污染物主要集中在街道中心背风侧,其他位置浓度明显降低;双路障时仅在一定范围内改善人行道内空气品质,但对街道整体污染物分布影响不大。

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