Metastable fluid flow described via a discrete-velocity coagulation-fragmentation model
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mathematical Physics,Statistical and Nonlinear Physics
Link
http://link.springer.com/content/pdf/10.1007/BF02179553.pdf
Reference16 articles.
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3. N. Bellomo and L. de Socio, The discrete Boltzmann equation for gas mixtures: A regular space model and a shock wave problem,Mech. Res. Comm. 10:233–238 (1983).
4. J. Brock, Simulation of aerosol dynamics, inTheory of Dispersed Multiphase Flow, R. E. Meyer, ed. (Academic Press, New York, 1983), pp. 135–172.
5. G.-Q. Chen, C. D. Levermore, and T.-P. Liu, Hyperbolic conservation laws with stiff relaxation terms and entropy,Commun. Pure Appl. Math. 47:787–830 (1994).
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1. Mathematical Aspects of Coagulation-Fragmentation Equations;CIM Series in Mathematical Sciences;2015
2. Existence, uniqueness and stability for spatially inhomogeneous Becker-Döring equations with diffusion and convection terms;Annales de la Faculté des sciences de Toulouse : Mathématiques;2010-12-06
3. A spatially homogeneous Boltzmann equation for elastic, inelastic and coalescing collisions;Journal de Mathématiques Pures et Appliquées;2005-09
4. A KINETIC MODEL FOR DROPLET COALESCENCE IN DENSE SPRAYS;Mathematical Models and Methods in Applied Sciences;2001-07
5. Spectral problems for the four-velocity model: revisited;Applied Mathematics Letters;2001-04
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