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首页> 外文期刊>Journal of Sound and Vibration >Dynamic response bound analysis for elastic beams under uncertain excitations
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Dynamic response bound analysis for elastic beams under uncertain excitations

机译:不确定激励下弹性梁的动态响应响应分析

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By introducing the interval process model, a non-random vibration analysis method is proposed in this paper to calculate the dynamic displacement response bounds of elastic beams under uncertain excitations. Firstly, based on the interval process model, a conception of spatial-time interval field is proposed to describe the uncertainty of excitations in spatial and time domain. Secondly, the middle point function and the radius function of displacement response of the elastic beam are deduced by combining the spatial-time interval field and the traditional mode superposition method, based on which an analytical formulation of the upper and lower displacement response bound functions of the elastic beam are obtained. In addition, the displacement response bound functions of a simply supported beam structure under two types of external excitations, namely the concentrated load and the sinusoidal distributed load, are given. Finally, several numerical examples are investigated to demonstrate the effectiveness of the proposed method. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过引入间隔过程模型,本文提出了一种非随机振动分析方法,以计算不确定激励下弹性梁的动态位移响应界限。首先,基于间隔过程模型,提出了空间间隔场的概念来描述空间和时域中激发的不确定性。其次,通过组合空间间隔场和传统的模式叠加方法,推导出弹性光束的位移响应的中间点函数和半径函数,基于该传统模式叠加方法,其上下位移响应函数的分析制定获得弹性梁。另外,给出了在两种类型的外部激励下的简单支持的光束结构的位移响应界定功能,即集中的负载和正弦分布式负载。最后,研究了几个数值例子以证明所提出的方法的有效性。 (c)2018年elestvier有限公司保留所有权利。

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