A hybrid numerical simulation method for typhoon wind field over complex terrain

被引:2
作者
Huang, Wenfeng [1 ]
Zhou, Huanlin [1 ]
机构
[1] Hefei Univ Technol, Sch Civil Engn, Hefei 230009, Anhui, Peoples R China
基金
中国博士后科学基金;
关键词
typhoon wind field; complex terrain; CFD simulation; field measurement data; comparison; BOUNDARY-LAYER; FLOW; MODEL;
D O I
10.12989/was.2014.18.5.549
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
In spite of progress in the numerical simulation of typhoon wind field in atmospheric boundary layer (ABL), using typhoon wind field model in conjunction with Monte Carlo simulation method can only accurately evaluate typhoon wind field over a general terrain. This method is not enough for a reliable evaluation of typhoon wind field over the actual complex terrain with surface roughness and topography variations. To predict typhoon wind field over the actual complex terrain in ABL, a hybrid numerical simulation method combined typhoon simulation used the typhoon wind field model proposed by Meng et al. (1995) and CFD simulation in which the Reynolds averaged Navier-Stokes (RANS) equations and k-epsilon turbulence model are used. Typhoon wind filed during typhoon Dujuan and Imbudo are simulated using the hybrid numerical simulation method, and compared with the results predicted by the typhoon wind field model and the wind field measurement data collected by Fugro Geotechnical Services (FGS) in Hong Kong at the bridge site from the field monitoring system of wind turbulence parameters (FMS-WTP) to validate the feasibility and accuracy of the hybrid numerical simulation method. The comparison demonstrates that the hybrid numerical simulation method gives more accurate prediction to typhoon wind speed and direction, because the effect of topography is taken into account in the hybrid numerical simulation method.
引用
收藏
页码:549 / 566
页数:18
相关论文
共 16 条
[1]  
BATTS ME, 1980, J STRUCT DIV-ASCE, V106, P2001
[2]   Numerical evaluation of wind flow over complex terrain:: Review [J].
Bitsuamlak, GT ;
Stathopoulos, T ;
Bédard, C .
JOURNAL OF AEROSPACE ENGINEERING, 2004, 17 (04) :135-145
[3]  
Cheng Y, 2003, J WIND ENG IND AEROD, V91, P1301, DOI [10.1016/j.jweia.2003.08.001, 10.1016/j.jweia.2003.08.004]
[4]   Modeling of topographic wind speed effects in Hawaii [J].
Chock, GYK ;
Cochran, L .
JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2005, 93 (08) :623-638
[5]  
Georgiou P.N., 1985, THESIS U W ONTARIO L
[6]  
Hong Kong Observatory, 2004, TROP CYCL 2003
[7]  
Lee M, 2010, WIND STRUCT, V13, P375
[8]   Numerical simulation of the atmospheric flow in a mountainous region of the North of Portugal [J].
Maurizi, A ;
Palma, JMLM ;
Castro, FA .
JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 1998, 74-6 :219-228
[9]   AN ANALYTICAL MODEL FOR SIMULATION OF THE WIND-FIELD IN A TYPHOON BOUNDARY-LAYER [J].
MENG, Y ;
MATSUI, M ;
HIBI, K .
JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 1995, 56 (2-3) :291-310
[10]  
Russell LR, 1971, J Waterways Harbors Coast Eng Div, V97, DOI [DOI 10.1061/AWHCAR.0000056, 10.1061/AWHCAR.0000056]