Numerical simulation of sea breeze characteristics observed at tropical coastal site, Kalpakkam

被引:0
|
作者
Jamima P. [1 ]
Lakshminarasimhan J. [1 ]
机构
[1] Dept. of Applied Mechanics, I.I.T.
关键词
Numerical modeling; Sea breeze; Thermal internal boundary layer;
D O I
10.1007/BF02709787
中图分类号
学科分类号
摘要
Sea breeze characteristics around Kalpakkam tropical coastal site are studied using an Advanced Regional Prediction System (ARPS) mesoscale model, which is non-hydrostatic, compressible atmospheric prediction model following the terrain coordinate system. Various options such as surface physics, atmospheric radiation physics, Coriolis force, microphysics, cumulus parameterization and 1.5 level TKE closure scheme for diffusion are included in the model. A joint meteorological field experiment was carried out by IITM-Pune and IGCAR at Kalpakkam by deploying state-of-the-art sensors and tether balloon systems for observing the height profiles of meteorological parameters. The data obtained from the field experiment are used here to compare the results from numerical simulations. From the simulated results, it is seen that duration of the sea breeze is 6 hours which agrees well with the observations. The height of the Thermal Internal Boundary Layer (TIBL) is also simulated from the vertical profiles of potential temperature. Simulated wind speed and wind directions are compared with the 50 m tower data and potential temperature profiles are compared with the kytoon data. Results are in good agreement with the observed values except during night time wherein a small difference is seen in the wind speed. © Printed in India.
引用
收藏
页码:197 / 209
页数:12
相关论文
共 50 条
  • [21] NUMERICAL-SIMULATION OF SEA BREEZE IN LOS-ANGELES
    GOODIN, WR
    BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY, 1976, 57 (06) : 752 - 752
  • [22] Observational analysis and numerical simulation of sea breeze using WRF model over the Indian southeast coastal region
    Reddy, B. Revanth
    Srinivas, C., V
    Venkatraman, B.
    METEOROLOGY AND ATMOSPHERIC PHYSICS, 2022, 134 (03)
  • [23] Numerical Simulation of Sea Breeze Convergence over Antarctic Peninsula
    Comin, Alcimoni Nelci
    Acevedo, Otavio Costa
    ADVANCES IN METEOROLOGY, 2017, 2017
  • [24] Observational analysis and numerical simulation of sea breeze using WRF model over the Indian southeast coastal region
    B. Revanth Reddy
    C. V. Srinivas
    B. Venkatraman
    Meteorology and Atmospheric Physics, 2022, 134
  • [25] The seasonal characteristics of the breeze circulation at a coastal Mediterranean site in South Italy
    Federico, S.
    Pasqualoni, L.
    Sempreviva, A. M.
    De Leo, L.
    Avolio, E.
    Calidonna, C. R.
    Bellecci, C.
    ADVANCES IN SCIENCE AND RESEARCH, 2010, 4 : 47 - 56
  • [26] Sea breeze signatures on line-of-sight microwave links in tropical coastal areas
    Reddy, L. Ram Gopal
    Reddy, B. M.
    RADIO SCIENCE, 2007, 42 (04)
  • [27] NUMERICAL EXPERIMENTS ON THE TIBL PROFILES AND THE LOCAL SEA BREEZE CIRCULATION IN COASTAL AREAS
    王卫国
    蒋维楣
    JournalofTropicalMeteorology, 1998, (01) : 72 - 78
  • [28] Large-eddy simulation of sea breeze at an idealized peninsular site
    Rizza, Umberto
    Miglietta, Mario Marcello
    Anabor, Vagner
    Degrazia, Gervasio A.
    Maldaner, Silvana
    JOURNAL OF MARINE SYSTEMS, 2015, 148 : 167 - 182
  • [29] Numerical simulation of a sea breeze under dominant synoptic conditions at Perth
    Yimin, M
    Lyons, TJ
    METEOROLOGY AND ATMOSPHERIC PHYSICS, 2000, 73 (1-2) : 89 - 103
  • [30] A numerical simulation of sea breeze thunderstorm structure over the Hainan Island
    Su Tao
    Miao Jun-Feng
    Cai Qin-Bo
    CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2016, 59 (01): : 59 - 78