Optimal Design of a Novel Large-Span Cable-Supported Steel–Concrete Composite Floor System

Author:

Tan Meiwen12,Wu Yifan13,Pan Wenhao145ORCID,Liu Guoming3,Chen Wei23

Affiliation:

1. College of Civil Engineering and Architecture, Zhejiang University, Hangzhou 310058, China

2. Center for Balance Architecture, Zhejiang University, Hangzhou 310028, China

3. Architectural Design and Research Institute of Zhejiang University Co., Ltd., Hangzhou 310028, China

4. Key Laboratory of Space Structures of Zhejiang Province, Hangzhou 310058, China

5. Future City Laboratory, Innovation Center of Yangtze River Delta, Zhejiang University, Jiaxing 314100, China

Abstract

This paper optimizes the design of a novel large-span cable-supported steel–concrete composite floor system in a simply supported single-span, single-strut configuration, aiming for cost-effective solutions and minimal steel consumption. The optimization considers various cross-sectional dimensions, adhering to building standards and engineering practices, and is based on a non-linear programming (NLP) algorithm. Parameters of live loads ranging from 2 to 10 kN/m2 and spans from 20 to 100 m are considered. The optimization results show that cable-supported composite floors with a single strut exhibit robust economic feasibility for spans of less than 80 m and live loads under 8 kN/m2. Compared to conventional composite floors with welded I-beams, the cable-supported system offers more cost-effective cross-sections and reduces steel consumption. The savings in economically equivalent steel consumption range from 20% to 60%. Discussion on the area ratio of cables to steel beam in the optimal cross-section reveals that the secondary load-bearing system (i.e., bending of the main beam with an effective span length of L/2) may require more steel in cases of ultra-large spans. Therefore, the economical efficiency of cable-supported composite beams with multiple struts and smaller effective span lengths warrants further exploration in future studies.

Funder

National Natural Science Foundation of China

Zhejiang Provincial Natural Science Foundation of China

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

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