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271032

Structural optimization of RC composite girders in pre-fabricated buildings

Article

Last updated: 23 Jan 2023

Subjects

-

Tags

Reinforced Concrete

Abstract

This paper presents cost optimization analysis of reinforced concrete composite girders in RC
pre-fabricated buildings designed according to the Egyptian Code of Practice (ECP 203-2017).
The adopted objective function was to minimize the total cost of the RC pre-fabricated building
including the cost of composite girders, columns and foundations considering the cost of the
materials and labor for reinforcement, concrete and formwork. The structure is modeled and
analyzed using a Microsoft Excel- 2013 spreadsheet. The optimization process was performed
at three different levels. In the first level, optimum column arrangement was attained while the
optimum dimensions for all RC elements of the selected structural plan of the pre-fabricated
buildings were studied in the second level. In the third level, a comprehensive study was
conducted in order to determine the optimum dimensions and reinforcement of RC composite
girders by Generalized Reduced Gradient (GRG) method. Finally, the cost improvement of three
buildings of composite concrete is demonstrated, and the results of the optimum and traditional
design procedures are compared

DOI

10.21608/asge.2019.271032

Keywords

Composite girders, Cost optimization, Generalized Reduced Gradient, Horizontal Shear, Pre-Fabricated Buildings

Volume

03

Article Issue

04

Related Issue

36174

Issue Date

2019-11-01

Receive Date

2022-11-23

Publish Date

2019-11-01

Page Start

90

Page End

105

Print ISSN

2785-9509

Online ISSN

2812-5142

Link

https://asge.journals.ekb.eg/article_271032.html

Detail API

https://asge.journals.ekb.eg/service?article_code=271032

Order

271,032

Type

Original Article

Type Code

2,140

Publication Type

Journal

Publication Title

International Journal of Advances in Structural and Geotechnical Engineering

Publication Link

https://asge.journals.ekb.eg/

MainTitle

-

Details

Type

Article

Created At

23 Jan 2023