Abstract A new analytical approach for modeling the added mass and hydrodynamic interaction of two cylinders subjected to large motions in a potential stagnant fluid
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A new analytical approach for modeling the added mass and hydrodynamic interaction of two cylinders subjected to large motions in a potential stagnant fluid

机译:一种新的分析方法,用于建模潜在停滞液中大运动的两个气缸的额外质量和流体动力相互作用

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AbstractA potential theory is presented for the problem of two moving circular cylinders, with possibly different radii, large motions, immersed in an perfect stagnant fluid. We show that the fluid force is the superposition of an added mass term, related to the time variations of the potential, and a quadratic term related to its spatial variations. We provide new simple and exact analytical expressions for the fluid added mass coefficients, in which the effect of the confinement is made explicit. The self-added mass (resp. cross-added mass) is shown to decrease (resp. increase) with the separation distance and increase (resp. decreases) with the radius ratio. We then consider the case in which one cylinder translates along the line joining the centers with a constant speed. We show that the two cylinders are repelled from each other, with a force that diverges to infinity at impact. We extend our approach to the case in which one cylinder is imposed a sinusoidal vibration. We show that the force on the stationary cylinder and the vibration displacement have opposite (resp. identical) axial (resp. transverse) directions. For large vibration amplitudes, this force is strongly altered by the nonlinear effects induced by the spatial variations of the potential. The force on the vibrating cylinder is in phase with the imposed displacement and is mainly driven by the added mass term. The results of this paper are of particular interest for engineers who need to understand the essential features associated with the vibration of a solid body in a still fluid.]]>
机译:<![cdata [ Abstract 呈现出两个移动圆柱体的问题,具有可能不同的半径,大的运动,浸入完美的停滞流体中。我们表明,流体力是与电位的时间变化相关的添加质量术语的叠加,以及与其空间变化有关的二次术语。我们为流体添加质量系数提供了新的简单精确的分析表达式,其中限制的效果明确。自添加质量(RESP。交联质量)显示以分离距离和随半径比增加(逐渐增加)。然后,我们考虑一种圆筒沿着与恒定速度加入中心的线路转换的情况。我们表明,两个气缸彼此排斥,具有对Infract的无限远发散的力。我们将我们的方法扩展到一个气缸施加正弦振动的情况。我们表明,固定缸上的力和振动位移相反(RESP。相同)轴向(RESP。横向)方向。对于大的振动振动,通过电位的空间变化引起的非线性效应强烈地改变该力。振动圆筒上的力与施加的位移相位,主要由添加的质量术语驱动。本文的结果对于需要了解与静物液中固体振动相关的基本特征的工程师特别令人兴趣。 ]]>

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