COLLISION KERNELS FOR THE WALDMANN-SNIDER EQUATION - GENERALIZATION TO GAS-MIXTURES

被引:1
作者
DEMEIO, L
MONCHICK, L
机构
[1] MSE Research Center, The Applied Physics Laboratory, The Johns Hopkins University, Laurel
来源
PHYSICA A | 1995年 / 214卷 / 01期
关键词
D O I
10.1016/0378-4371(94)00219-J
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
In this paper we generalize the collision kernel method, which had only been worked out for the test particle limit of the linearized Waldmann-Snider equations, to the general linearized Waldmann-Snider equations for non-equilibrium gas mixtures of finite concentration. By using the total angular momentum representation for the transition matrix and a suitable coordinate transformation, which takes advantage of the rotational symmetries of the kernel, the ten-dimensional collision integrals are reduced to sets of two-dimensional integrals, The transformation by Hilbert of the classical Boltzmann equation for rigid spheres to a Fredholm integral equation with symmetric kernel has thus been extended to the Waldmann-Snider equation for diatomic molecules. This transformation enables the extension of collocation methods, which have been profitably used with model Boltzmann equations, to quantum Boltzmann equations that describe the kinetic theory of gases with real molecules.
引用
收藏
页码:95 / 114
页数:20
相关论文
共 50 条
[11]   MATRIX-ELEMENTS OF THE BOLTZMANN COLLISION OPERATOR FOR GAS-MIXTURES [J].
LINDENFELD, MJ ;
SHIZGAL, B .
CHEMICAL PHYSICS, 1979, 41 (1-2) :81-95
[12]   SCALAR NONLINEAR BOLTZMANN-EQUATION FOR GAS-MIXTURES [J].
KUGERL, G ;
SCHURRER, F .
ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND PHYSIK, 1991, 42 (03) :364-369
[13]   COLLISION-INDUCED INTENSITY IN SPECTRUM OF ALKALI RARE GAS-MIXTURES [J].
GRANIER, J ;
GRANIER, R ;
SCHULLER, F .
JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER, 1975, 15 (7-8) :619-624
[14]   APPLICABILITY OF BVR EQUATION IN DESCRIBING THERMODYNAMIC PROPERTIES OF GAS-MIXTURES [J].
MUKHACHEV, GA ;
VALEISHIN, FG .
ZHURNAL FIZICHESKOI KHIMII, 1980, 54 (03) :770-772
[15]   GENERALIZATION OF FREUNDLICH, TOTH AND DUBININ-RADUSHKEVICH EQUATIONS TO ADSORPTION OF GAS-MIXTURES [J].
JARONIEC, M ;
NARKIEWICZ, J ;
BOROWKO, M ;
RUDZINSKI, W .
POLISH JOURNAL OF CHEMISTRY, 1978, 52 (01) :197-201
[16]   USE OF THE BOLTZMANN-EQUATION FOR CALCULATING THE SCATTERING LAW IN GAS-MIXTURES [J].
EDER, OJ ;
LACKNER, T ;
POSCH, M .
KERNTECHNIK, 1989, 53 (03) :227-232
[17]   PREPARATION AND CERTIFICATION OF GAS-MIXTURES FROM THE KRICHEVSKII-KAZARNOVSKII EQUATION [J].
ROZHNOV, MS ;
GOLOBORODKO, NP .
MEASUREMENT TECHNIQUES, 1979, 22 (11) :1377-1379
[18]   A SIMPLIFIED INTEGRAL-EQUATION FOR ADSORPTION OF GAS-MIXTURES ON HETEROGENEOUS SURFACES [J].
MARCZEWSKI, AW ;
DERYLOMARCZEWSKA, A ;
JARONIEC, M .
MONATSHEFTE FUR CHEMIE, 1989, 120 (03) :225-230
[19]   ADSORPTION OF GAS-MIXTURES ON HOMOGENEOUS SURFACES EXTENSION OF JOVANOVIC EQUATION ON ADSORPTION FROM GASEOUS MIXTURES [J].
JARONIEC, M .
CHEMICKE ZVESTI, 1975, 29 (04) :512-516
[20]   THE COLLISION-INDUCED TRANSLATIONAL SPECTRUM OF CF4-HE GAS-MIXTURES [J].
AFANASEV, AD ;
BULANIN, MO ;
TONKOV, MV .
CANADIAN JOURNAL OF PHYSICS, 1980, 58 (06) :836-839