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Titlebook: IUTAM Symposium on Free Surface Flows; Proceedings of the I A. C. King,Y. D. Shikhmurzaev Conference proceedings 2001 Springer Science+Busi

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书目名称IUTAM Symposium on Free Surface Flows
副标题Proceedings of the I
编辑A. C. King,Y. D. Shikhmurzaev
视频video
丛书名称Fluid Mechanics and Its Applications
图书封面Titlebook: IUTAM Symposium on Free Surface Flows; Proceedings of the I A. C. King,Y. D. Shikhmurzaev Conference proceedings 2001 Springer Science+Busi
描述Free surface flows arise in the natural world, physical and biological sciences and in some areas of modern technology and engineering. Exam­ ples include the breaking of sea waves on a harbour wall, the transport of sloshing fluids in partly filled containers, and the design of micronozzles for high speed ink-jet printing. Apart from the intrinsic mathematical challenge in describing and solving the governing equations, there are usually important environmental, safety and engineering features which need to be analysed and controlled. A rich variety of techniques has been developed over the past two decades to facilitate this analysis; singular perturbations, dynamical systems, and the development of sophisticated numerical codes. The extreme and sometimes violent nature of some free surface flows taxes these methods to the limit. The work presented at the symposium addressed these limits and can be loosely classified into four areas: (i) Axisymmetric free surface flows. There are a variety of problems in the printing, glass, fertiliser and fine chemical industries in which threads of fluid are made and controlled. Presentations were made in the areas of pinch-off for inviscid and
出版日期Conference proceedings 2001
关键词dynamics; fluid mechanics; instability; mechanics; solid; stability; torsion; waves
版次1
doihttps://doi.org/10.1007/978-94-010-0796-2
isbn_softcover978-94-010-3854-6
isbn_ebook978-94-010-0796-2Series ISSN 0926-5112 Series E-ISSN 2215-0056
issn_series 0926-5112
copyrightSpringer Science+Business Media Dordrecht 2001
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Thin-Film Flows And High-Order Degenerate Parabolic Equations,ing both PDE and ODE (partial and ordinary differential equation) methods. Here we summarise aspects of this mathematical literature, and of the related physics literature, in terms of the spreading of Newtonian fluids, particularly in the completely-wetting case.
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Fluid Mechanics of Single Cavitation Bubble Luminescence, flatrigid boundary are presented. Particular attention is paid to the parameter regime investigated experimentally by Lau terborn and others using laser induced bubbles and high-speed photography, in which light emission has been observed during the collapse of the bubble. Calculations are provid e
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The Recoil of A Broken Liquid Bridge,read is observed to have the shape of a slender cone close to the bifurcation point. In this paper, we study the evolution of an ideal fluid which is initially conical. The only force acting on the fluid is due to surface tension. We derive a simplified one-dimensional model and find an asymptotic s
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A Numerical Model of Gas-Liquid-Solid Contact Line,lation of two-phase flows. The extension concerns the ability of such a method to take into account the motion of a contact line. The selected numerical model enables one to simulate moving contact line by bypassing the mathematical singularity with the use of a staggered grid. It does not pretend t
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,A Bubble Rising in Viscous Fluid: Lagrange’s Equations for Motion at A High Reynolds Number,revious analytical calculations of that shape at high Reynolds numbers have ignored viscosity. This paper shows that if one includes viscosity by incorporating Rayleigh’s dissipation integral in Lagrange’s equations, then the speed of rise is that given by Moore, and the shape is that found for . fl
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