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Structural Optimization Method For 3D Reinforced Concrete Building Structure With Shear Wall

Authors: H. Nikzad; S. Yoshitomi;

Structural Optimization Method For 3D Reinforced Concrete Building Structure With Shear Wall

Abstract

{"references": ["Building code requirements for structural concrete (ACI 318-14) and commentary.", "Men Jinjei, Shi Qingxuan, and He Zhijian. \"Optimal Design of Tall Residential Building with RC Shear Wall and with Rectangular Layout\". International Journal of High-Rise Buildings. December 2014, Val 3, No 4, 285-296.", "Senay Atabay, \"Cost optimization of three-dimensional beamless reinforced concrete shear-wall systems via genetic algorithm\". Expert system with Applications 36 (2009) 3555-3561.", "Mohammad J. Fadaee and Donald E. Grierson. \"Design optimization of 3D reinforced concrete structures having shear walls\". Engineering with Computers (1998) 14: 139-145, \u24d21998 Springer-Verlag London Limited.", "P. Hajerk and D. M. Frangopol. \"Optimum design of shear-wall systems\". Computers & structures Val. 38, No. 2, pp. 171-184, 1991.", "Ali Kaveh and Pooya Zakian. \"Optimal seismic design of reinforced concrete shear wall-frame structures\". KSCE Journal of Civil Engineering 1-10 \u24d22014 Korean Society of Civil Engineers DOI 10.1007/s12205 014-0640-x", "ASCE 7 American Society of Civil Engineers: Minimum Design Loads for Buildings and other Structures."]}

In this paper, an optimization procedure is applied for 3D Reinforced concrete building structure with shear wall. In the optimization problem, cross sections of beams, columns and shear wall dimensions are considered as design variables and the optimal cross sections can be derived to minimize the total cost of the structure. As for final design application, the most suitable sections are selected to satisfy ACI 318-14 code provision based on static linear analysis. The validity of the method is examined through numerical example of 15 storied 3D RC building with shear wall. This optimization method is expected to assist in providing a useful reference in design early stage, and to be an effective and powerful tool for structural design of RC shear wall structures.

Keywords

RC shear wall structures., linear static analysis, MATLAB, ETABS, RC moment frame, Structural optimization

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