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Titlebook: Heat Transfers and Related Effects in Supercritical Fluids; Bernard Zappoli,Daniel Beysens,Yves Garrabos Book 2015 Springer Science+Busine

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0926-5112 al basic information is provided on statistical mechanics, f.This book investigates the unique hydrodynamics and heat transfer problems that are encountered in the vicinity of the critical point of fluids. Emphasis is given on weightlessness conditions, gravity effects and thermovibrational phenomen
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Introduction to Thermomechanical Effectswe are mainly interested in the transient and stationary nonequilibrium states of the near-critical fluids described in the previous introductory chapter, the most important assumption we make is local thermodynamic equilibrium, since local equilibrium must be present for the hydrodynamic equations presented in Chap. . to be valid.
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Heat Transferations. A constant temperature is then imposed at the other boundary (that mimics the thermostated cell). As the piston-effect velocity is expected to be proportional to the heat flux at the wall, the response velocity can be checked by tuning the flux.
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Rayleigh–Bénard and Rayleigh–Taylor Instabilitiesm fluid layer topped by a cooler one, it is shown that the thermal diffusion layer behaves as an interface and gives rise to a Rayleigh–Taylor like instability. Thermo-acoustic oscillations at the Rayleigh–Bénard threshold are described. They come from the interaction between thermal plumes with the thermostated, horizontal upper wall.
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The Pancake Test Celleded to support the high internal pressure of the confined fluid. The main characteristic parameters of length and time governing the fluid thermal behavior during the pancake cell heating are defined.
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