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Observational study of wind characteristics from 356-meter-high Shenzhen Meteorological Tower during a severe typhoon

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

The characteristics of winds associated with tropical cyclones are of great significance in many engineering fields. This paper presents an investigation of wind characteristics over a coastal urban terrain based on field measurements collected from multiple cup anemometers and ultrasonic anemometers equipped at 13 height levels on a 356-m-high meteorological tower in Shenzhen during severe Typhoon Hato. Several wind quantities, including wind spectrum, gust factor, turbulence intensity and length scale as well as wind profile, are presented and discussed. Specifically, the probability distributions of fluctuating wind speeds are analyzed in connection with the normal distribution and the generalized extreme value distribution. The von Karman spectral model is found to be suitable to depict the energy distributions of three-dimensionally fluctuating winds. Gust factors, turbulence intensity and length scale are determined and discussed. Moreover, this paper presents the wind profiles measured during the typhoon, and a comparative study of the vertical distribution of wind speeds from the field measurements and existing empirical models is performed. The influences of the topography features and wind speeds on the wind profiles were investigated based on the field-measured wind records. In general, the empirical models can provide reasonable predictions for the measured wind speed profiles over a typical coastal urban area during a severe typhoon.
Original languageEnglish
Pages (from-to)575-595
JournalWind and Structures, An International Journal
Volume30
Issue number6
Online published25 Jun 2020
DOIs
Publication statusPublished - Jun 2020

Research Keywords

  • field measurement
  • wind characteristics
  • typhoon
  • meteorological tower
  • GUST FACTORS
  • BOUNDARY-LAYER
  • TURBULENCE INTENSITIES
  • ROUGHNESS LENGTH
  • AERODYNAMIC ROUGHNESS
  • PROFILES
  • DISPLACEMENT
  • SPECTRA
  • FIELDS
  • SPEEDS

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