首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >CHAOTIC INTERACTION DYNAMICS OF THREE STRUCTURES: TWO CYLINDRICAL SHELLS NESTED INTO EACH OTHER AND THEIR REINFORCING LOCAL RIB
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CHAOTIC INTERACTION DYNAMICS OF THREE STRUCTURES: TWO CYLINDRICAL SHELLS NESTED INTO EACH OTHER AND THEIR REINFORCING LOCAL RIB

机译:三种结构的混沌相互作用动力学:相互嵌套的两个圆柱壳及其增强的局部肋

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摘要

This paper studies the chaotic dynamics of two cylindrical shells nested into each other with a gap and their reinforcing beam, also with a gap, which is subjected to a distributed alternating load. The problem is solved using methods of nonlinear dynamics and the qualitative theory of differential equations. The Novozhilov equations for geometrically nonlinear structures are used as the governing equations. Contact pressure is determined by Kantor's method. Using finite elements in spatial variables, the partial differential equations for the beam and shells are reduced to the Cauchy problem, which is solved by explicit integration (Euler's method). The chaotic synchronization of this system is studied.
机译:本文研究了两个有间隙的圆柱壳的混沌动力学,它们的间隙和它们的加强梁也有间隙,它们承受了分布的交变载荷。使用非线性动力学方法和微分方程的定性理论解决了该问题。几何非线性结构的Novozhilov方程用作控制方程。接触压力由Kantor方法确定。使用空间变量中的有限元,将梁和​​壳体的偏微分方程简化为柯西问题,该问题通过显式积分(欧拉方法)解决。研究了该系统的混沌同步。

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