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Titlebook: Drop-Surface Interactions; Martin Rein Conference proceedings 2002 CISM Udine 2002 Engineering.Mechanics.Mechanics of Materials.Thermodyna

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Interactions between Drops and Hot Surfacesurfaces whose temperatures are above and below the saturation and solidification point of the liquid need to be distinguished. In internal combustion engines, in spray cooling processes and in fire extinguishing drops impinge on surfaces that are far above the saturation temperature. The impact of d
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Low Speed Drop Impact Onto Dry Solid Surfaceshe drop impact and the time evolution of the impact process. A new phenomenological classification differentiates between six possible outcomes. In order to be able to identify the influencing parameters, changes of drop diameter, impact velocity, surface tension, viscosity, advancing and receding c
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Asymptotic Theory of Droplet Spreading After Collision With a Solid Surface height and radius of droplet consequently. The developed model describes the rim formation on the front of spreading droplet and oscillation of the droplet due to the dynamics edge angle. The offered theory has allowed calculating the frequency of droplet oscillation and the maximal radius of the s
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Theoretical and Experimental Study of Shock Wave Focusing in a Confined Reflectorsser (1996) is tested in an experimental investigation. A thin cylindrical chamber filled with gas and having a specific form of the boundary is used to study the process of reflection and convergence of initially cylindrical shocks. The process is visualized at different locations in the chamber by
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Splash Formation by Water Drops behaviour were mapped out on a Froude-Weber plot. Two transition zones were identified where high speed jets were formed without bubble entrapment. This singular behaviour is surface tension driven. The numerical simulations of Morton were compared with photographs of dyed drops and confirmed that
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Drop Impacts on Liquid Layers: Some New Phenomena at the Edges of Parameter Spacelves in the absence of surface tension at the surface of a granular medium. The former of these is realized when a stationary drop of liquid coalesces with a flat layer of the same liquid. This coalescence is observed to take place in steps generating smaller and smaller drops. The latter phenomena
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