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首页> 外文期刊>International journal of non-linear mechanics >Nonlinear stochastic vibration of a variable cross-section rod with a fractional derivative element
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Nonlinear stochastic vibration of a variable cross-section rod with a fractional derivative element

机译:具有分数衍生元件的可变横截面杆的非线性随机振动

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The article deals with the problem of computing efficiently the nonlinear response of a rod involving a fractional constitutive model, and exposed to random excitation. The constitutive model is a three-parameter model comprising an instant elasticity modulus, a prolonged elasticity modulus, and a relaxation parameter. The nonlinear term is a linear-plus-cubic force of the Winkler kind. The resulting nonlinear fractional partial differential equation governing the rod displacement has no known exact solution. Thus, the article proposes an approximate analytical solution by relying on the statistical linearization technique. Further, it develops a Boundary Element Method (BEM)-based approach to estimate numerically the rod response statistics. The statistical linearization solution is obtained by representing the rod displacement as the superposition of linear modes of vibration having time-dependent coefficients. In this context, it is shown that the equation governing the time variation of the mode coefficients is a nonlinear fractional ordinary differential equation, whose solution is computed by a surrogate linear system identified by minimizing the response error between the linear system and the nonlinear one in a mean square sense. Relevant Monte Carlo studies pertaining to rods with fixed-fixed, and fixed-free ends show that the proposed analytical solution is in a good agreement with data obtained by the numerical (BEM) approach.
机译:本文涉及有效地计算涉及分数本构模型的杆的非线性响应,并暴露于随机激发。本构模型是一种三参数模型,包括瞬时弹性模量,延长的弹性模量和弛豫参数。非线性术语是Winkler类的线性加立方力。由此产生的非线性分数偏微分方程管杆位移没有已知的精确解决方案。因此,本文通过依赖于统计线性化技术提出了一种近似的分析解决方案。此外,它开发了基于边界元方法(BEM)的方法来估计数值杆响应统计。通过将杆位移表示为具有时间相关系数的线性模式的叠加来获得统计线性化溶液。在这种情况下,示出了管理模式系数的时间变化的方程是非线性分数常微分方程,其通过通过最小化线性系统和非线性之间的响应误差来识别的代理线性系统来计算其解决方案平均方向感。与具有固定固定的杆有关的相关蒙特卡罗研究和无固定末端表明,所提出的分析解决方案与由数值(BEM)方法获得的数据良好。

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