2011Journal of Highway and Transportation Research and Development (English Edition)Requires access

Simulation of Atmosphere Boundary Layer by Using Wedges and Rough Elements Technique

Hongtao Xu, Mingshui Li, Haili Liao, Yong He

Open publisher page 2 citations

Abstract

Based on the technique that using wedges and roughness elements to simulate the atmospheric boundary layer, barriers acting as vortex generators were used to effectively increase turbulence intensity on top of wind tunnel. The wind field of atmosphere boundary layer was established by using the devices combination. The mean velocity profile, turbulence intensity profile and power spectra of the simulated wind field were all measured. The changes of mean velocity profile and turbulence intensity profile after adding barriers were discussed. The wedge’ area linear decrease with height decrease brings about a corresponding approximate linear wind speed profile downstream. Roughness elements adjusted the profiles of mean wind speed and turbulence intensity in wind tunnel. The barriers increased turbulence intensity on top of wind tunnel. The test results show that the wind field meets the requirement of low roughness and large turbulence intensity in model test. However, the profiles of simulated turbulence power spectra and integral scales with height are contrary to those in natural atmospheric boundary layer, which is as a result of the figure of wedges.

About this research paper

What this paper is about

Based on the technique that using wedges and roughness elements to simulate the atmospheric boundary layer, barriers acting as vortex generators were used to effectively increase turbulence intensity on top of wind tunnel. The wind field of atmosphere boundary layer was established by using the devices combination. The mean velocity profile, turbulence intensity profile and power spectra of the simulated wind field were all measured. The changes of mean velocity profile and turbulence intensity profile after adding barriers were discussed. The wedge’ area linear decrease with height decrease brings about a corresponding approximate linear wind speed profile downstream. Roughness elements adjusted the profiles of mean wind speed and turbulence intensity in wind tunnel. The barriers increased turbulence intensity on top of wind tunnel. The test results show that the wind field meets the requirement of low roughness and large turbulence intensity in model test. However, the profiles of simulated turbulence power spectra and integral scales with height are contrary to those in natural atmospheric boundary layer, which is as a result of the figure of wedges.

Why it matters

OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Based on the technique that using wedges and roughness elements to simulate the atmospheric boundary layer, barriers acting as vortex generators were used to effectively increase turbulence intensity on top of wind tunnel. The wind field of atmosphere boundary layer was established by using the devices combination. The mean velocity profile, turbulence intensity profile and power spectra of the simulated wind field were all measured. The changes of mean velocity profile and turbulence intensity profile after adding barriers were discussed. The wedge’ area linear decrease with height decrease brings about a corresponding approximate linear wind speed profile downstream. Roughness elements adjusted the profiles of mean wind speed and turbulence intensity in wind tunnel. The barriers increased turbulence intensity on top of wind tunnel. The test results show that the wind field meets the requirement of low roughness and large turbulence intensity in model test. However, the profiles of simulated turbulence power spectra and integral scales with height are contrary to those in natural atmospheric boundary layer, which is as a result of the figure of wedges.

Key concepts: Turbulence kinetic energy, Log wind profile, Turbulence, Boundary layer, Wind speed, Wind tunnel, Planetary boundary layer, Wind profile power law

Related papers

Back to paper searchBrowse research topicsOriginal source
Simulation of Atmosphere Boundary Layer by Using Wedges and Rough Elements Technique — Research Paper | ScholarLens