水平弹性带板在定深流体中的振动

Q4 Environmental Science
K. Szmidt, B. Hedzielski
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引用次数: 0

摘要

摘要本文研究了水平弹性薄板浸入无限层定深流体中的自由振动和强迫振动问题。在自由振动中,板上的压力载荷是由板的假定位移产生的。在强迫振动中,流体压力主要是由到达板的水波引起的。在这两种情况下,我们都有一个流体动力学的耦合问题,其中板块和流体运动通过板块表面的边界条件耦合。同时,板上的压力载荷取决于板与流体底部之间的间隙。板块的运动伴随着流体的运动。这导致了所谓的共振动流体质量,它强烈地改变了板的特征频率。在这个问题的表述中,采用了板的小挠度的线性理论。为了计算流体压力,在双连通无限流体域中构造了拉普拉斯方程的解。为此,将该无限域划分为简单几何的子域,并为每个子域分别构造问题方程的解。数值实验验证了本文提出的公式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vibrations of a Horizontal Elastic Band Plate Submerged in Fluid of Constant Depth
Abstract The paper deals with free and forced vibrations of a horizontal thin elastic plate submerged in an infinite layer of fluid of constant depth. In free vibrations, the pressure load on the plate results from assumed displacements of the plate. In forced vibrations, the fluid pressure is mainly induced by water waves arriving at the plate. In both cases, we have a coupled problem of hydrodynamics in which the plate and fluid motions are coupled through boundary conditions at the plate surface. At the same time, the pressure load on the plate depends on the gap between the plate and the fluid bottom. The motion of the plate is accompanied by the fluid motion. This leads to the so-called co-vibrating mass of fluid, which strongly changes the eigenfrequencies of the plate. In formulation of this problem, a linear theory of small deflections of the plate is employed. In order to calculate the fluid pressure, a solution of Laplace’s equation is constructed in the doubly connected infinite fluid domain. To this end, this infinite domain is divided into sub-domains of simple geometry, and the solution of the problem equation is constructed separately for each of these domains. Numerical experiments are conducted to illustrate the formulation developed in this paper.
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来源期刊
Archives of Hydroengineering and Environmental Mechanics
Archives of Hydroengineering and Environmental Mechanics Environmental Science-Water Science and Technology
CiteScore
1.30
自引率
0.00%
发文量
4
期刊介绍: Archives of Hydro-Engineering and Environmental Mechanics cover the broad area of disciplines related to hydro-engineering, including: hydrodynamics and hydraulics of inlands and sea waters, hydrology, hydroelasticity, ground-water hydraulics, water contamination, coastal engineering, geotechnical engineering, geomechanics, structural mechanics, etc. The main objective of Archives of Hydro-Engineering and Environmental Mechanics is to provide an up-to-date reference to the engineers and scientists engaged in the applications of mechanics to the analysis of various phenomena appearing in the natural environment.
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