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Hydrodynamic shock of elastic structures impacting on the water: theory and experiments

机译:弹性结构对水的水动力冲击:理论与实验

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The aim of this paper is to provide a theoretical and experimental analysis of the response of an elastic system carried on board a wedge-shaped body impacting the water surface. The wedge entering the water has a sudden deceleration with shock characteristics, resulting in a short-time duration and a sharp peak value. On the other hand, the carried system undergoes an oscillatory motion induced by the inertial load generated by the impact. The study of this problem reveals the occurrence of special conditions in the response of the on-board oscillator, depending on the parameters associated with the water entry problem, that lead to large elastic forces. The experiments show that when varying the characteristic natural frequency of the on-board oscillator, critical impact conditions occur characterized by very large amplitudes of the structural response that confirm the theoretical predictions. The analysis, based on the water shock spectral response developed by the authors in some previous papers, is generalized here and validated experimentally. (C) 2003 Elsevier Ltd. All rights reserved. [References: 21]
机译:本文的目的是提供对楔形水体撞击水面的弹性系统的响应的理论和实验分析。进入水中的楔形物突然减速并具有冲击特性,导致持续时间短且峰值陡。另一方面,承载系统经历由冲击产生的惯性载荷引起的振荡运动。对这个问题的研究表明,根据与水进入问题相关的参数,板载振荡器的响应中会出现特殊情况,这会导致较大的弹力。实验表明,当改变板载振荡器的特征固有频率时,会出现临界冲击条件,其特征是结构响应的幅度非常大,从而证实了理论预测。基于作者在之前的一些论文中开发的水冲击光谱响应的分析,在此进行了概括并进行了实验验证。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:21]

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