Algorithmization of boundary value problems in the theory of flexible circular plates
Annotatsiya
This paper considers the construction of a unified computational scheme for solving boundary value problems of static and dynamic calculation of flexible circular solid and annular plates using the nonlinear Lyava theory [1], the development of an algorithm for dynamic and static calculation of flexible circular plates and testing of the constructed automated system and show the convergence rates of the method finite differences, to investigate the stress-strain state of flexible round plates. Based on the results obtained, it will build their graphs and calculate the calculated values. Compare them according to linear and nonlinear theories.