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[分形与混沌] 内共振系统非线性模态构造

内共振系统非线性模态构造

The construction of non-linear normal modes for systems with internal resonance

A numerical method, based on the invariant manifold approach, is presented for constructing non-linear normal modes for systems with internal resonances. In order to parameterize the non-linear normal modes of interest, multiple pairs of system state variables involved in the internal resonance are kept as ‘seeds’ for the construction of the multi-mode invariant manifold. All the remaining degrees of freedom are then constrained to these ‘seed’, or master, variables, resulting in a system of non-linear partial differential equations that govern the constraint relationships, and these are solved numerically. The computationally-intensive solution procedure uses a combination of finite difference schemes and Galerkin-based expansion approaches. It is illustrated using two examples, both of which focus on the construction of two-mode models. The first example is based on the analysis of a simple three-degree-of-freedom example system, and is used to demonstrate the approach. An invariant manifold that captures two non-linear normal modes is constructed, resulting in a reduced order model that accurately captures the system dynamics. The methodology is then applied to a larger order system, specifically, an 18-degree-of-freedom rotating beam model that features a three-to-one internal resonance between the first two flapping modes. The accuracy of the non-linear two-mode reduced order model is verified by comparing time-domain simulations of the two DOF model and the full system equations of motion.

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吸声处理与室内降噪

思想值得借鉴,有全文吗?

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Mathematica专辑

上文左下角有链接。

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谁能第一个把非线性模态用上一把 真刀真枪地 [em01]

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呵呵~~没精力搞这么多阿

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A wrong way to go in Nonlinear Dynamics.

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回复 6楼 的帖子

为什么这么说呢?

看国内陈予恕和徐鉴都在这方面走过一点的,看过一些资料,不过现在没有时间去往这方面想哈!
秋天,又是一个收获的季节,愿伴随论坛,一起喜迎丰收

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您真倒霉,遇上衰神了,您的振动币减少18!

连不上

这篇文章在那能下到?

那个连接不能用

谢谢
做个有勇气的人,一定要踏踏实实的努力,为理想努力!

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有Elsevier这个数据库的权限的才可以看到
凡所有相,皆是虚妄。若见诸相非相,即见如来。
注:有问题请事先在论坛相应版块发帖子,不要直接短信或者邮件联系,论坛没有原帖子的一律不回。谢谢合作、见谅!

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恭喜你,你的发明申请论坛专利成功,花费4振动币!

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刚看过想做这方面的
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发一个

刚看过想做这方面的
看看怎么样
谁要找我
qq120282811
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