Mean wind field in the urban atmospheric boundary layer by sodar data

被引:0
|
作者
Yushkov, V. P. [1 ]
机构
[1] Moscow MV Lomonosov State Univ, Fac Phys, Moscow 119992, Russia
来源
14TH INTERNATIONAL SYMPOSIUM FOR THE ADVANCEMENT OF BOUNDARY LAYER REMOTE SENSING | 2008年 / 1卷
关键词
D O I
暂无
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Two-year uninterrupted sodar measurements of vertical profiles of wind speed and direction in the height range 40 to 250-500 m were carried out in two points of Moscow megalopolis. Seasonal and diurnal courses of mean speed profiles, wind speed distributions, wind roses and occurrence of strong and weak wind speed events are shown. Influence of urban heat island and orography on wind field is discussed.
引用
收藏
页码:U36 / U44
页数:9
相关论文
共 50 条
  • [21] Evaluation of Sodar methods for the determination of the atmospheric boundary layer mixing height
    D. N. Asimakopoulos
    C. G. Helmis
    J. Michopoulos
    Meteorology and Atmospheric Physics, 2004, 85 : 85 - 92
  • [22] Field monitoring of boundary layer wind characteristics in urban area
    Li, Q. S.
    Zhi, Lunhai
    Hu, Fei
    WIND AND STRUCTURES, 2009, 12 (06) : 553 - 574
  • [23] SODAR OBSERVATIONS OF THE ATMOSPHERIC BOUNDARY-LAYER OVER THE CENTER OF MOSCOW
    LOKOSHCHENKO, MA
    PEKUR, MS
    ACOUSTICAL PHYSICS, 1994, 40 (03) : 439 - 440
  • [24] Submesoscale Wavelike Structures in the Atmospheric Boundary Layer and Their Parameters According to Sodar Measurement Data in the Moscow Region
    D. V. Zaitseva
    M. A. Kallistratova
    V. S. Lyulyukin
    R. D. Kouznetsov
    D. D. Kuznetsov
    N. V. Vazaeva
    Izvestiya, Atmospheric and Oceanic Physics, 2023, 59 : 233 - 242
  • [25] Submesoscale Wavelike Structures in the Atmospheric Boundary Layer and Their Parameters According to Sodar Measurement Data in the Moscow Region
    Zaitseva, D. V.
    Kallistratova, M. A.
    Lyulyukin, V. S.
    Kouznetsov, R. D.
    Kuznetsov, D. D.
    Vazaeva, N. V.
    IZVESTIYA ATMOSPHERIC AND OCEANIC PHYSICS, 2023, 59 (03) : 233 - 242
  • [26] The turning of the wind in the atmospheric boundary layer
    Pena, Alfredo
    Gryning, Sven-Erik
    Floors, Rogier
    SCIENCE OF MAKING TORQUE FROM WIND 2014 (TORQUE 2014), 2014, 524
  • [27] Equilibrium atmospheric boundary layer model for numerical simulation of urban wind environment
    Shen, Lian
    Han, Yan
    Cai, C. S.
    Hu, Peng
    Lei, Xu
    Zhou, Pinhan
    Deng, Shuwen
    PHYSICS OF FLUIDS, 2024, 36 (08)
  • [28] Doppler sodar and measurement of atmospheric wind
    Khanna, RM
    Aggarwal, SK
    IETE TECHNICAL REVIEW, 1994, 11 (04) : 231 - 237
  • [29] A study of the spatial structure of the atmospheric boundary layer with a Doppler-Sodar network
    Granberg, I. G.
    Kramar, V. F.
    Kuznetsov, R. D.
    Chkhetiani, O. G.
    Kallistratova, M. A.
    Kulichkov, S. N.
    Artamonova, M. S.
    Kuznetsov, D. D.
    Perepelkin, V. G.
    Perepelkin, V. V.
    Pogarskii, F. A.
    IZVESTIYA ATMOSPHERIC AND OCEANIC PHYSICS, 2009, 45 (05) : 541 - 548
  • [30] Investigations on convective boundary layer turbulence using SODAR data
    Tampieri, F
    Maurizi, A
    ANNALS OF GEOPHYSICS, 2003, 46 (02) : 451 - 457