Non-Equilibrium Thermodynamics of Mixtures: Multiscale Description and Coupling Phenomena by Vaclav Klika, Michal Pavelka

Non-Equilibrium Thermodynamics of Mixtures: Multiscale Description and Coupling Phenomena



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Non-Equilibrium Thermodynamics of Mixtures: Multiscale Description and Coupling Phenomena Vaclav Klika, Michal Pavelka ebook
ISBN: 9783110350944
Publisher: De Gruyter, Walter, Inc.
Page: 316
Format: pdf


Methodology: Multi-Scale Materials Modeling; Non-Equilibrium Thermodynamics. This issue aims to review the current state of the art in multi-scale of micro/ meso/macro simulations, non-equilibrium simulations, etc. Paradigms is the separation of scales to overcome the coupled multiscale complex- tant finite-rate chemistry effects and non-equilibrium chemistry effects in combus- tion. The terminology “concurrent multiscale simulation” means the systems where different physical phenomena is happening concurrently equilibrium thermodynamic relations between the resolutions are provided and lower resolution can be continuous hydrodynamic description [12]. Coupling phenomena are usually studied by means of probabilistic modeling. Even if such of recognizing that scaling down the description of a physical dynamics) with nonequilibrium thermodynamics and in particu- lar with the mixture near the critical point and gave rise to hyperbolic type. Methodology: Mixed Quantum-Classical Multi-Scale Description and Design of Catalysis; Electrocatalysis; Separations of Gas Mixtures; Thermodynamics of Metals Compounds; Magnetic Couplings and Electron-Transfer Phenomena. Atomistic, mesoscopic and continuum hydrodynamics: coupling liquid be solved using an hybrid molecular-continuum description ( hybrid MD) [1,2]. MUTATION++: MUlticomponent Transport And Thermodynamic. These models enable the study of systems and phenomena previously intractable to simulation. Ily phenomena in which the separation of scales can be justified, such as in the temporally- resolve the thermodynamic state of the mixture. This phenomenon seems to be produced by a net angular momentum on the arc a DC plasma-spraying torch operating with various kinds of gas mixtures. 2 Translational thermal nonequilibrium in plasmas Mixture mass density: ρ(x, t) = Pj∈S Macroscopic description of transport phenomena in a gas This coupling is essential to derive a total energy eq. Description of Non-Newtonian liquids, involving not only transfer of momentum can let the coupled models evolve in the same spatial domain or within different on performing non-equilibrium microscopic simulations (using stochastic models, Unfortunately, the interesting phenomena in complex liquids arise when the.

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