Integral Lifting of Steel Structure Corridor between Two Super High-Rise Buildings under Wind Load

Author:

Ruan Ruolin1,Lai Muhuo2,Jiang Chen2,Wang Jinbing2,Lin Yong2

Affiliation:

1. Chengyi College, Jimei University, Xiamen 361000, China

2. China Construction Fourth Engineering Division Co., Ltd., Guangzhou 510665, China

Abstract

This paper explores the lifting project of a steel structure corridor in the Haiyue Center, Quanzhou City, with a focus on mechanical response, safety, stability, and construction guidance under wind load conditions. The investigation attends to safety apprehensions stemming from the absence of horizontal constraints within the corridor, rendering it vulnerable to wind-induced loads. Measures are implemented to prevent collisions with nearby buildings during lifting. Stability challenges, including beam displacement and excessive stress, are examined. Anti-deformation trusses and inclined web rods are employed to ensure stability, prevent potential instabilities, and promote uniform deformation. The study also analyzes stress during asynchronous lifting. Through the enforcement of stringent parameters, where asynchronous displacement is confined to a maximum of 25 mm and asynchronous lifting load is limited to 20%, the structural integrity of the corridor is meticulously upheld. This judicious approach serves to not only avert deformation but also to forestall structural impairment. Therefore, the significance of stress distribution and deformation is emphasized when conducting the integral lifting of steel structure corridor between two super-tall buildings under wind load conditions. Simultaneously, relevant construction control measures have been devised, along with offering scientific recommendations for similar cases involving lifting construction processes under the influence of wind.

Funder

Natural Science Foundation of Fujian Province

Social Science Foundation of Fujian Province

Xiamen Federation of Social Science Associations and Xiamen Academy of Social Sciences

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

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