Numerical analysis of the shear strength of circular reinforced concrete columns subjected to cyclic lateral loads using linear genetic programming

2020 ◽  
Vol 37 (7) ◽  
pp. 2517-2537
Author(s):  
Mostafa Rezvani Sharif ◽  
Seyed Mohammad Reza Sadri Tabaei Zavareh

Purpose The shear strength of reinforced concrete (RC) columns under cyclic lateral loading is a crucial concern, particularly, in the seismic design of RC structures. Considering the costly procedure of testing methods for measuring the real value of the shear strength factor and the existence of several parameters impacting the system behavior, numerical modeling techniques have been very much appreciated by engineers and researchers. This study aims to propose a new model for estimation of the shear strength of cyclically loaded circular RC columns through a robust computational intelligence approach, namely, linear genetic programming (LGP). Design/methodology/approach LGP is a data-driven self-adaptive algorithm recently used for classification, pattern recognition and numerical modeling of engineering problems. A reliable database consisting of 64 experimental data is collected for the development of shear strength LGP models here. The obtained models are evaluated from both engineering and accuracy perspectives by means of several indicators and supplementary studies and the optimal model is presented for further purposes. Additionally, the capability of LGP is examined to be used as an alternative approach for the numerical analysis of engineering problems. Findings A new predictive model is proposed for the estimation of the shear strength of cyclically loaded circular RC columns using the LGP approach. To demonstrate the capability of the proposed model, the analysis results are compared to those obtained by some well-known models recommended in the existing literature. The results confirm the potential of the LGP approach for numerical analysis of engineering problems in addition to the fact that the obtained LGP model outperforms existing models in estimation and predictability. Originality/value This paper mainly represents the capability of the LGP approach as a robust alternative approach among existing analytical and numerical methods for modeling and analysis of relevant engineering approximation and estimation problems. The authors are confident that the shear strength model proposed can be used for design and pre-design aims. The authors also declare that they have no conflict of interest.

2014 ◽  
Vol 19 ◽  
pp. 112-120 ◽  
Author(s):  
Amir H. Gandomi ◽  
Danial Mohammadzadeh S. ◽  
Juan Luis Pérez-Ordóñez ◽  
Amir H. Alavi

2013 ◽  
Vol 36 ◽  
pp. 136-144 ◽  
Author(s):  
Saeed K. Babanajad ◽  
Amir H. Gandomi ◽  
Danial Mohammadzadeh S. ◽  
Amir H. Alavi

2011 ◽  
Vol 17 (3) ◽  
pp. 400-408 ◽  
Author(s):  
Mohammad Hajsadeghi ◽  
Farshid Jandaghi Alaee ◽  
Amir Shahmohammadi

The behaviour of fibre reinforced polymer (FRP)-wrapped concrete in circular columns has been extensively studied; however, much less is known about concrete in FRP-confined square/rectangular columns, in which the concrete is non-uniformly confined and the effectiveness of confinement is considerably reduced. This article presents the results of the numerical analysis of square/rectangular reinforced concrete (RC) columns confined with FRP jackets. Two prisms of size 250×250×500 mm and 150×300×500 mm were modelled and analysis was carried out using a non-linear finite element method. Two parameters of wrap thickness and fibre orientation were considered. The finite element analysis results were in good agreement with experimental data presented by other researchers. The numerical analysis results demonstrated significant enhancement in the compressive strength and ductility of the FRP-wrapped square/rectangular RC columns compared to unconfined RC columns. It was observed that the behaviour of the columns was greatly affected by the analysis parameters. Santrauka Apskritojo skerspjūvio armuotų betoninių elementų sustiprintų polimeriniu pluoštu armuotu apvalkalu, elgsena yra išsamiai išnagrinėta. Daug mažiau žinoma apie tokių stačiakampio skerspjūvio elementų elgseną. Tokiuose elementuose betono deformacijos suvaržomos nevienodai, dėl to mažėja sustiprinimo efektyvumas. Straipsnyje pateikiami kvadratinio ir stačiakampio skerspjūvio gelžbetoninių elementų skaitinio tyrimo rezultatai. Taikant baigtinių elementų metodą buvo atlikta dviejų 250×250×500 mm ir 150×300×500 mm prizmių netiesinė analizė. Buvo išnagrinėta po du apvalkalo storio ir pluošto orientacijos atvejus. Baigtinių elementų analizės rezultatai gerai sutapo su eksperimentiniais kitų tyrėjų pateiktais duomenimis. Tyrimo rezultatai parodė, kad sustiprinimas žymiai padidina elementų gniuždomajį stiprį ir stamantrumą lyginant su analogiškais nesustiprintų elementų rodikliais. Buvo pastebėta, kad sustiprėjimo poveikis priklauso nuo apvalkalo rodiklių.


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