Study of wind field under sea breeze conditions; an application of WRF model

被引:87
|
作者
Papanastasiou, D. K. [1 ]
Melas, D. [2 ]
Lissaridis, I. [2 ]
机构
[1] Ctr Res & Technol Thessaly, Lab Agr Engn & Environm, Inst Technol & Management Agr Ecosyst, Volos 38500, Greece
[2] Aristotle Univ Thessaloniki, Lab Atmospher Phys, Dept Appl & Environm Phys, Fac Sci,Sch Phys, Thessaloniki 54124, Greece
关键词
WRF; Wind field; Sea-land breeze; Topography; Slope; Greece;
D O I
10.1016/j.atmosres.2010.06.005
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
Weather Research and Forecast (WRF) model is applied to study the wind field over the east coast of central Greece under typical summer conditions. This study aims at identifying the major features of the sea breeze circulation that is very frequently developing in the area during the warm period of the year and at verifying the model's ability to simulate the complex flow that is strongly influenced by the complicated coastline and very steep terrain. The simulation is carried out for a five-day period, characterized by sea breeze development. It is found that a complex meteorological phenomenon is evolving in the area, as two circulation systems are successively developing, the first over Pagasitikos Gulf, which is overridden by the system that develops later over the Aegean Sea. The major characteristics of the wind patterns and especially the sea breeze systems are identified and discussed. Additionally, the impact of topography and slope on sea breeze circulation is also commented. Model predictions agree fairly well with the observations taken at a near-surface meteorological station. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:102 / 117
页数:16
相关论文
共 50 条
  • [31] Application of WRF mesoscale model for prediction of wind energy resources in Tanzania
    Kibona, Talam Enock
    SCIENTIFIC AFRICAN, 2020, 7
  • [32] Quantifying the Uncertainty in the Weather Research and Forecasting Model under Sea Breeze and Low-Level Jet Conditions in the New York Bight: Importance to Offshore Wind Energy
    Mccabe, Elizabeth j.
    Freedman, Jeffrey m.
    WEATHER AND FORECASTING, 2025, 40 (03) : 425 - 450
  • [33] A sensitivity study of the WRF model in wind simulation for an area of high wind energy
    Carvalho, David
    Rocha, Alfredo
    Gomez-Gesteira, Moncho
    Santos, Carlos
    ENVIRONMENTAL MODELLING & SOFTWARE, 2012, 33 : 23 - 34
  • [34] Wind climate estimation using WRF model output: method and model sensitivities over the sea
    Hahmann, Andrea N.
    Vincent, Claire L.
    Pena, Alfredo
    Lange, Julia
    Hasager, Charlotte B.
    INTERNATIONAL JOURNAL OF CLIMATOLOGY, 2015, 35 (12) : 3422 - 3439
  • [35] ON THE HEIGHT OF THE INTERNAL THERMAL-BOUNDARY LAYER UNDER SEA-BREEZE CONDITIONS
    YORDANOV, DL
    BATCHVAROVA, EA
    ZEITSCHRIFT FUR METEOROLOGIE, 1988, 38 (03): : 145 - 149
  • [36] Photochemical ozone formation at Portugal West Coast under sea breeze conditions as assessed by master chemical mechanism model
    Evtyugina, M. G.
    Pio, C.
    Nunes, T.
    Pinho, P. G.
    Costa, C. S.
    ATMOSPHERIC ENVIRONMENT, 2007, 41 (10) : 2171 - 2182
  • [37] AN ENVIRONMENTAL EXPERIMENT OVER ATHENS URBAN AREA UNDER SEA-BREEZE CONDITIONS
    KAMBEZIDIS, HD
    PEPPES, AA
    MELAS, D
    ATMOSPHERIC RESEARCH, 1995, 36 (1-2) : 139 - 156
  • [38] An investigation of the boundary layer dynamics of Sardinia Island under sea-breeze conditions
    Melas, D
    Lavagnini, A
    Sempreviva, AM
    JOURNAL OF APPLIED METEOROLOGY, 2000, 39 (04): : 516 - 524
  • [39] Internal boundary layer structure under sea-breeze conditions in Hong Kong
    Liu, HP
    Chan, JCL
    Cheng, AYS
    ATMOSPHERIC ENVIRONMENT, 2001, 35 (04) : 683 - 692
  • [40] Photochemical pollution under sea breeze conditions, during summer, at the Portuguese West Coast
    Evtyugina, Margarita G.
    Nunes, Teresa
    Pio, Casimiro
    Costa, Carla Sandra
    ATMOSPHERIC ENVIRONMENT, 2006, 40 (33) : 6277 - 6293