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The statistical approach to the nonequilibrium thermodynamics presented in Part I of this paper was generalized to rotating gaseous systems. Basing on the Boltzmann equation written for rotating reference frame the kinetic coefficients satisfying the Onsager–Casimir reciprocity relations are...
Persistent link: https://www.econbiz.de/10010599550
Cross effects arising in a binary mixture of rarefied gases confined between two infinite plates are studied. The Onsager reciprocity relations for these phenomena have been derived applying general properties of the Boltzmann equation and the boundary conditions for the distribution function....
Persistent link: https://www.econbiz.de/10011064191
On the basis of the general theory presented in part I a number of the following typical and practically important problems of rarefied gas dynamics are considered: evaporation and condensation of a gas between two parallel plates, evaporation and condensation in a closed cylinder,...
Persistent link: https://www.econbiz.de/10010587407
The statistical approach to the nonequilibrium thermodynamics based on fundamental properties of the Boltzmann equation and boundary condition for the distribution function is generalized for mixtures of nonreactive gases. As an application of the approach several problems of gaseous mixture...
Persistent link: https://www.econbiz.de/10010587430
A new statistical approach to the nonequilibrium thermodynamics is worked out. The approach is based on general properties of the Boltzmann equation and boundary condition for the distribution function. It allows to obtain the Onsager-Casimir reciprocity relations for open gaseous systems at any...
Persistent link: https://www.econbiz.de/10010587477
The reciprocal relations for open gaseous systems are obtained on the basis of main properties of the non-stationary Boltzmann equation and gas–surface interaction law. It is shown that the main principles to derive the kinetic coefficients satisfying the reciprocal relations remain the same...
Persistent link: https://www.econbiz.de/10010873734
The Onsager–Casimir reciprocal relations obtained for gaseous systems on the basis of the linearized Boltzmann equation in a general form [F. Sharipov, Onsager–Casimir reciprocal relations based on the Boltzmann equation and gas–surface interaction law. Single gas., Phys. Rev. E 73 (2006)...
Persistent link: https://www.econbiz.de/10010874665