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Exact stiffness for beams on Kerr-type foundation: the virtual force approach
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نویسنده
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limkatanyu s. ,prachasaree w. ,damrongwiriyanupap n. ,kwon m. ,jung w.
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منبع
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journal of applied mathematics - 2013 - دوره : 2013 - شماره : 0
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چکیده
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This paper alternatively derives the exact element stiffness equation for a beam on kerr-type foundation. the shear coupling between the individual winkler-spring components and the peripheral discontinuity at the boundaries between the loaded and the unloaded soil surfaces are taken into account in this proposed model. the element flexibility matrix is derived based on the virtual force principle and forms the core of the exact element stiffness matrix. the sixth-order governing differential compatibility of the problem is revealed using the virtual force principle and solved analytically to obtain the exact force interpolation functions. the matrix virtual force equation is employed to obtain the exact element flexibility matrix based on the exact force interpolation functions. the so-called natural element stiffness matrix is obtained by inverting the exact element flexibility matrix. one numerical example is utilized to confirm the accuracy and the efficiency of the proposed beam element on kerr-type foundation and to show a more realistic distribution of interactive foundation force. © 2013 suchart limkatanyu et al.
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آدرس
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department of civil engineering,faculty of engineering,prince of songkla university, Thailand, department of civil engineering,faculty of engineering,prince of songkla university, Thailand, civil engineering program,school of engineering,university of phayao, Thailand, department of civil engineering,eri,gyeongsang national university, South Korea, department of civil engineering,gangneung-wonju national university, South Korea
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Authors
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