Seismic Design of Large-Span, Heavy-Load Transfer Truss for Zhanjiang Bay R&D Building

Author:

Lan Tao12ORCID,Li Maobei2,Li Ran1,Xue Chen1,Liu Dongmei1

Affiliation:

1. CSSC International Engineering Co., Ltd., Beijing 100121, China

2. School of Civil Engineering, Xi’an University of Architecture and Technology, Xi’an 710055, China

Abstract

The Zhanjiang Bay Laboratory R&D Building project aims to create a favorable working, research, and living environment. Zone II of the Zhanjiang Bay Laboratory R&D Building is equipped with a large-span, heavy-load transfer truss to obtain a large space on the ground floor. The overall structure adopts a steel frame-core tube structure system. In order to reduce the deflection of the large-span, heavy-load transfer truss, eight diagonal pull rods are installed between the large-span, heavy-load transfer truss and the core tube. The Q235 cross-shaped replacement section can consume construction load energy. Adopting replacement methods can reduce the stress and damage of diagonal pull rods caused by construction loads. The structure adopts a performance-based seismic design method for seismic calculation and analysis. In addition, a special analysis was conducted on the single frame structure. The major results can be summarized as follows: during small earthquakes, all structural components are in the elastic stage; during large earthquakes, frame beams yield first, but frame columns and core tubes do not yield; even without considering out-of-plane constraints, the structure can still meet the requirements.

Funder

CSSC International Engineering Co., Ltd. Technological Innovation and research and development project

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference19 articles.

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2. Maclead, I.A. (1970). Shear Wall-Frame Interaction—A Design Aid, Portland Cement Association.

3. Education in the field of construction of unique, high-rise and long-span buildings and constructions;Gamayunova;Adv. Mater. Res.,2015

4. Key points on large-span and heavy-load transfer structure design of Project of China National Convention Center Phase Two;Wang;Build. Struct.,2021

5. Structural design of second-phase project of National Convention Center;Wand;Build. Struct.,2019

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