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forced-based shear-flexure-interaction frame element for nonlinear analysis of non-ductile reinforced concrete columns
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نویسنده
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sae-long worathep ,limkatanyu suchart ,hansapinyo chayanon ,imjai thanongsak ,kwon minho
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منبع
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journal of applied and computational mechanics - 2020 - دوره : 6 - شماره : Special Is - صفحه:1151 -1167
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چکیده
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An efficient frame model with inclusion of shearflexure interaction is proposed here for nonlinear analyses of columns commonly present in reinforced concrete (rc) frame buildings constructed prior to the introduction of modern seismic codes in the seventies. these columns are usually characterized as flexureshear critical rc columns with light and non-seismically detailed transverse reinforcement. the proposed frame model is developed within the framework of force-based finite element formulation and follows the timoshenko beam kinematics hypothesis. in this type of finite element formulation, the internal force fields are related to the element force degrees of freedom through equilibrated force shape functions and there is no need for displacement shape functions, thus eliminating the problem of displacementfield inconsistency and resulting in the lockingfree timoshenko frame element. the fibersection model is employed to describe axial and flexural responses of the rc section. the modified mergos-kappos interaction procedure and the ucsd shearstrength model form the core of the shearflexure interaction procedure adopted in the present work. capability, accuracy, and efficiency of the proposed frame element are validated and assessed through correlation studies between experimental and numerical responses of two flexureshear critical columns under cyclic loadings. distinct response characteristics inherent to the flexureshear critical column can be captured well by the proposed frame model. the computational efficiency of the force-based formulation is demonstrated by comparing local and global responses simulated by the proposed force-based frame model with those simulated by the displacement-based frame model.
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کلیدواژه
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timoshenko frame element ,shear-flexure interaction ,fiber frame element ,seismic nonlinear analysis ,forced-based formulation ,flexure-shear critical column
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آدرس
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university of phayao, school of engineering, department of civil engineering, thailand, prince of songkla university, faculty of engineering, department of civil engineering, thailand, chiang mai university, center of excellence in natural disaster management, department of civil engineering, thailand, walailak university, school of engineering and resources, thailand, gyeongsang national university, eri, department of civil engineering, south korea
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پست الکترونیکی
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kwonm@gnu.ac.kr
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Authors
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