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strain based panel elements for shear wall analysis
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نویسنده
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sepehrnia sohrab ,rahami hossein ,mirhosseini mohammad ,zeighami ehsanollah
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منبع
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numerical methods in civil engineering - 2020 - دوره : 4 - شماره : 3 - صفحه:1 -7
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چکیده
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The finite element method (fem) can be applied to practically analyze the tall buildings in which the shear walls are used to resist the lateral loads. accordingly, a variety of displacement and strainbased as well as frame macro elements have been proposed for analysis of the tall buildings. with respect to application of the lower order plane stress elements, analytical problems may arise within the numerical process of the finite element analysis. the analytical problems caused by the parasitic shear effects in finite elements and definition of an incompatible rotational coupling at the beamcolumn and beamwall joints are the two major issues involved in analysis of the tall buildings. moreover, such effects can give rise to shear locking based on definition of an incompatible rotational coupling at beamwall joints. subsequently, in this paper, new nonlinear strain based finite elements are proposed to overcome some of the complications occurring due to above mentioned parameters. these strainbased panel type elements are comprised of eight degrees of freedom and have been formulated on the basis of the general beam elements. in conclusion, the proposed elements can be utilized to accurately analyze the shear walls on the condition that elements are of coarse size of mesh. in addition, a set of numerical analyses are conducted to evaluate the results and indicate that, changes in the power of the strain functions greatly affect the processor in structural modeling.
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کلیدواژه
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tall building ,stain function ,shear-flexure interaction ,coupling effect
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آدرس
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islamic azad university, arak branch, department of civil engineering, iran, university of tehran, school of engineering science, college of engineering, iran, islamic azad university, arak branch, department of civil engineering, iran, islamic azad university, arak branch, department of civil engineering, iran
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Authors
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