Fuzzy Logic Design Approach for A Singly Reinforced Concrete Beam

Authors

  • SOA Olawale Department of Civil and Environmental Engineering, Bells University of Technology, Idiroko, Benja Village, P.M.B. 1015, Ota, Nigeria Author
  • OP Akintunde Department of Civil and Environmental Engineering, Bells University of Technology, Idiroko, Benja Village, P.M.B. 1015, Ota, Nigeria Author
  • MO Afolabi Department of Civil and Environmental Engineering, Bells University of Technology, Idiroko, Benja Village, P.M.B. 1015, Ota, Nigeria Author

DOI:

https://doi.org/10.47363/JCERT/2021(3)111

Keywords:

Fuzzy Logic, Eurocode 2 (EC2), MATLAB, Optimization, Prediction

Abstract

 This paper presents the Fuzzy logics approach for a singly reinforced concrete beam. The rules are generated for the FIS for the variables. The width, and the moment constitutes the crisp data for the inputs and the steel ratio represents the crisp output. The MATLAB fuzzy tool kit is used to execute the simulation. The code prescription of the design of a singly reinforced concrete beam is a straight forward calculation. However, the overestimation of reinforcement can be enormous. This can be very impacting on the cost of the project. This work attempts to use fuzzy logic predictive power to design a singly reinforced concrete beam. The result reasonable agreement between the code provisions and the fuzzy logic predictions. It was established that fuzzy logic can be adopted as a significant technique for the optimization of the design of a singly reinforced concrete beam.

Author Biography

  • OP Akintunde, Department of Civil and Environmental Engineering, Bells University of Technology, Idiroko, Benja Village, P.M.B. 1015, Ota, Nigeria

    OP Akintunde, Department of Civil and Environmental Engineering, Bells University of Technology, km 8, Idiroko, Benja Village, P.M.B. 1015, Ota, Nigeria.

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Published

2021-01-10