SELF-CONSISTENT SOLUTION FOR THE GENERALIZED HYDRODYNAMICS MODEL OF SUSPENSION DYNAMICS - COMPARISON OF THEORY WITH RHEOLOGICAL AND OPTICAL MEASUREMENTS

被引:24
作者
WAGNER, NJ
机构
[1] Department of Chemical Engineering, University of Delaware, Newark
关键词
D O I
10.1103/PhysRevE.49.376
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
A self-consistent theory for the dynamics and rheology of suspensions of Brownian colloids is presented completely in terms of physicochemical suspensions properties. The theory uses the Rogers-Young closure [Phys. Rev. A 30, 999 (1984)] of the Ornstein-Zernike equation for the equilibrium structure and the generalized hydrodynamics theory developed by Hess and Klein [Adv. Phys. 33, 173 (1983)] for the dynamics. Direct hydrodynamic interactions are neglected. Mode-mode coupling is used to close the generalized hydrodynamics equations and provide a self-consistent set of equations for the dynamics. Two closures for the three-particle vertex function, a two-body approximation and convolution, are derived and compared. All accessible linear viscoelastic properties of the suspension are then calculated from the dynamics of the intermediate-scattering function. Numerical solutions are obtained for Yukawa particles through the viscoelastic approximation. Comparisons with dynamic-light-scattering measurements of the cumulants and the intermediate-scattering function of dilute but strongly correlated suspensions demonstrate the accuracy of the self-consistent solutions with the two-body approximation for low particle concentrations. Comparisons of the mechanical properties of concentrated, strongly correlated suspensions demonstrate the accuracy of the self-consistent solutions with the convolution approximation. The results are interpreted in terms of the cage-melting model for colloid dynamics.
引用
收藏
页码:376 / 401
页数:26
相关论文
共 85 条
[41]   GENERALIZED HYDRODYNAMICS OF SYSTEMS OF BROWNIAN PARTICLES [J].
HESS, W ;
KLEIN, R .
ADVANCES IN PHYSICS, 1983, 32 (02) :173-283
[42]   WAVE VECTOR AND FREQUENCY-DEPENDENT LONGITUDINAL VISCOSITY OF SYSTEMS OF INTERACTING BROWNIAN PARTICLES [J].
HESS, W .
PHYSICA A, 1981, 107 (01) :190-200
[43]   FOKKER-PLANCK DYNAMICS OF INTERACTING BROWNIAN PARTICLES [J].
HESS, W .
JOURNAL OF PHYSICS A-MATHEMATICAL AND GENERAL, 1981, 14 (05) :L145-L150
[44]  
HESS W, 1984, PROG COLL POL SCI S, V69, P174
[45]  
Hiemenz P. C, 1986, PRINCIPLES COLLOID S
[46]  
KEEPING S, THESIS U BRISTOL
[47]  
KEYES T, 1977, STATISTICAL MECHAN B, P259
[48]   MASS-DIFFUSION AND SELF-DIFFUSION PROPERTIES IN SYSTEMS OF STRONGLY CHARGED SPHERICAL-PARTICLES [J].
KLEIN, R ;
HESS, W .
FARADAY DISCUSSIONS, 1983, 76 :137-150
[49]  
KLEIN R, 1992, NATO ADV SCI I C-MAT, V369, P39
[50]  
KLEIN R, 1987, PHYSICS COMPLEX SUPE, P673