Mathematical modeling of some aerohydroelastic systems

P. A. Velmisov, A. Ankilov
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引用次数: 1

Abstract

The dynamics and stability of elastic elements of some aerohydroelastic systems – vibration devices designed to intensify of the technological processes, for example, for stirring gas-liquid media are investigated. The device is simulated by a flow channel containing elastic elements – deformable plates of variable thickness made from inhomogeneous material. A stream of a compressible or incompressible stirred medium (gas or liquid) flows inside the channel. To study the dynamics of elastic elements and a gas-liquid medium, both linear and nonlinear models of the mechanics of a solid deformable body, and linear models of the mechanics of liquid and gas are used. Models of vibration devices with different number and arrangement of elastic elements are considered. On the basis of the constructed functionals for the systems of partial differential equations, the sufficient stability conditions are obtained. The conditions impose restrictions on the parameters of mechanical systems.
气动水弹性系统的数学建模
本文研究了一些气液弹性系统弹性元件的动力学和稳定性,如为加强工艺过程而设计的振动装置,例如气液介质的搅拌。该装置通过一个包含弹性元件的流道来模拟,弹性元件是由非均匀材料制成的可变厚度的可变形板。一股可压缩或不可压缩的搅拌介质(气体或液体)在通道内流动。为了研究弹性元件和气液介质的动力学,使用了固体可变形体的线性和非线性力学模型,以及液体和气体的线性力学模型。考虑了弹性元件数目和排列方式不同的振动装置模型。在构造偏微分方程组泛函的基础上,得到了系统稳定性的充分条件。这些条件对机械系统的参数施加了限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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