Simulation and Analysis of Wind Pressure Coefficient of Landslide-Type Long-Span Roof Structure

Author:

Rong Bin12,Yin Shuhao1,Wang Quankui3,Yang Yanhong3,Qiu Jian3,Lin Changsheng3,Zhang Ruoyu1ORCID

Affiliation:

1. Department of Civil Engineering, Tianjin University, Tianjin 300072, China

2. Key Laboratory of Coast Civil Structure Safety, Ministry of Education, Tianjin University, Tianjin 300072, China

3. The Fourth Construction Engineering Company Ltd. of China Construction Second Engineering Bureau, Beijing, China

Abstract

This article carries out a numerical simulation of a landslide-type long-span roof structure, Harbin Wanda Cultural Industry Complex. The maximum span of the landslide-type roof is 150 m and the minimum span is 90 m, with a minimum height of 40 m and a maximum height of 120 m, and the roof area is divided into three different parts. The large eddy simulation (LES) method is used to simulate and record the wind pressure coefficient of the roof. The distribution law and cause of the mean wind pressure coefficient of the roof are firstly analyzed, and the comparison with the existing wind tunnel test data proves the validity of the numerical simulation. Secondly, a qualitative analysis is made on the distribution of root mean square (RMS) fluctuating coefficients. Subsequently, the non-Gaussian characteristics of the roof are briefly discussed, and the peak factor distribution is calculated. Finally, based on the total wind pressure coefficient, a simple evaluation method for judging favorable and unfavorable wind direction angles is proposed, and only the shape of the roof and wind angle need to be known.

Funder

China Academy of Building Research

Publisher

Hindawi Limited

Subject

Civil and Structural Engineering

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