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首页> 外文期刊>Journal of Fluid Mechanics >Capillary damping of inviscid surface waves in a circular cylinder
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Capillary damping of inviscid surface waves in a circular cylinder

机译:圆柱中无粘性表面波的毛细管阻尼

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We consider the effect of a wetting condition at the moving contact line on the frequency and damping of surface waves on an inviscid liquid in a circular cylinder. The velocity potential φ and the free surface elevationηare sought as complex eigenfunction expansions. The φ eigenvalues are the classical ones whereas the ij eigenvalues are unknown and have to be computed so as to satisfy the wetting condition on the contact line and the other free surface conditions – these turn out to be complex in general. A projection of the latter conditions on to an appropriate basis leads to an eigenvalue problem, for the complex frequency Ω which has to be solved iteratively with the wetting condition. The variation of Ω with liquid depth h, Bond number Bo, capillary coefficient λ and static contact angle θ_cO is explored for the (1, 0), (2, 0), (0, 1), (3, 0) and (4, 0) modes. The damping vanishes for λ = 0 (pinned-end edge condition) and λ = ∞ (free-end edge condition) with a maximum in the interior while the frequency decreases with increasing λ, approaching limiting values at the endpoints. A comparison with the analytic results of Miles (J. Fluid Mech., vol. 222, 1991, p. 197) for the no-meniscus case and the experimental results of Cocciaro, Faetti, & Festa (J. Fluid Mech., vol. 246, 1993,p. 43), where a meniscus is present, is good. The study provides a simple procedure for calculating the inviscid capillary damping associated with the moving contact line in a circular cylinder of finite depth with meniscus effects also being considered.
机译:我们考虑了在移动接触线上的湿润条件对圆柱体上不粘液体上表面波的频率和阻尼的影响。寻求速度势φ和自由表面高度η作为复本征函数展开。 φ特征值是经典值,而ij特征值是未知的,必须进行计算才能满足接触线上的润湿条件和其他自由表面条件–这些结果通常很复杂。后一个条件在适当的基础上的投影会导致一个特征值问题,因为复数频率Ω必须通过润湿条件进行迭代求解。研究(1,0),(2,0),(0,1),(3,0)和()的Ω随着液深h,键数Bo,毛细管系数λ和静态接触角θ_cO的变化。 4,0)模式。当λ= 0(固定端边缘条件)和λ=∞(自由端边缘条件)时,内部阻尼最大,而频率随λ的增加而减小,在端点处接近极限值。与非弯月面的Miles(J. Fluid Mech。,第222卷,1991,第197页)的分析结果以及Cocciaro,Faetti和Festa(J. Fluid Mech。 246,1993,p.43),如果存在弯月面,则是好的。该研究提供了一种简单的程序,用于计算与有限深度的圆柱体中的运动接触线相关的无粘性毛细管阻尼,并且还考虑了弯液面效应。

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