Dynamic simulation of columns considering geometric nonlinearity
TL;DRAbstract
Dealing with slender structural columns will make the use of classic elastic dynamic analysis of structures untrustworthy. This will emphasize the importance of developing a method for dynamic analysis of structures taking geometric nonlinearities into consideration. In order to achieve this the equations of motions are formulated, based on finite strain formula and virtual work method. To solve the equation of motion, the usual central difference method is used. The developed method is applied to two cases of columns with different slenderness ratio. The effect of introducing the nonlinear approach for different slenderness ratios of columns is investigated on natural frequency of the first three modes. Also, the relationship between the maximum displacement for a known time step and loading frequency is studied. To find the suitable slenderness ratio threshold when the effect of nonlinearity becomes significant, the relationship between slenderness ratio and the maximum displacement
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Dealing with slender structural columns will make the use of classic elastic dynamic analysis of structures untrustworthy. This will emphasize the importance of developing a method for dynamic analysis of structures taking geometric nonlinearities into consideration. In order to achieve this the equations of motions are formulated, based on finite strain formula and virtual work method. To solve the equation of motion, the usual central difference method is used. The developed method is applied to two cases of columns with different slenderness ratio. The effect of introducing the nonlinear approach for different slenderness ratios of columns is investigated on natural frequency of the first three modes. Also, the relationship between the maximum displacement for a known time step and loading frequency is studied. To find the suitable slenderness ratio threshold when the effect of nonlinearity becomes significant, the relationship between slenderness ratio and the maximum displacement
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