Performance Prediction of Hybrid Bamboo-Reinforced Concrete Beams Using Gene Expression Programming for Sustainable Construction

Author:

Waqas Hafiz Ahmed1ORCID,Bahrami Alireza2ORCID,Sahil Mehran1,Poshad Khan Adil1,Ejaz Ali3,Shafique Taimoor1,Tariq Zain1,Ahmad Sajeel1,Özkılıç Yasin Onuralp45ORCID

Affiliation:

1. Department of Civil Engineering, Ghulam Ishaq Khan Institute of Engineering Sciences and Technology, Topi, Swabi 23640, Pakistan

2. Department of Building Engineering, Energy Systems and Sustainability Science, Faculty of Engineering and Sustainable Development, University of Gävle, 801 76 Gävle, Sweden

3. Structural Engineering Department, National Institute of Transportation, National University of Science and Technology, Risalpur 23200, Pakistan

4. Department of Civil Engineering, Necmettin Erbakan University, 42090 Konya, Turkey

5. Department of Civil Engineering, Lebanese American University, Byblos 1102-2801, Lebanon

Abstract

The building and construction industry’s demand for steel reinforcement bars has increased with the rapid growth and development in the world. However, steel production contributes to harmful waste and emissions that cause environmental pollution and climate change-related problems. In light of sustainable construction practices, bamboo, a readily accessible and eco-friendly building material, is suggested as a viable replacement for steel rebars. Its cost-effectiveness, environmental sustainability, and considerable tensile strength make it a promising option. In this research, hybrid beams underwent analysis through the use of thoroughly validated finite element models (FEMs), wherein the replacement of steel rebars with bamboo was explored as an alternative reinforcement material. The standard-size beams were subjected to three-point loading using FEMs to study parameters such as the load–deflection response, energy absorption, maximum capacity, and failure patterns. Then, gene expression programming was integrated to aid in developing a more straightforward equation for predicting the flexural strength of bamboo-reinforced concrete beams. The results of this study support the conclusion that the replacement of a portion of flexural steel with bamboo in reinforced concrete beams does not have a detrimental impact on the overall load-bearing capacity and energy absorption of the structure. Furthermore, it may offer a cost-effective and feasible alternative.

Publisher

MDPI AG

Subject

General Materials Science

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