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Viscometric effects in a dense hard-sphere fluid

✍ Scribed by JoséMaría Montanero; Andrés Santos


Publisher
Elsevier Science
Year
1997
Tongue
English
Weight
455 KB
Volume
240
Category
Article
ISSN
0378-4371

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✦ Synopsis


A recently proposed Monte Carlo simulation method for the Enskog equation is applied to uniform shear flow. This state is characterized by uniform density n and temperature T and a linear velocity profile: u(r) = a.r, a~l~ = af=fBy. In each unit time step At, the peculiar velocities { V,} of N particles are updated in two stages. In the free streaming stage, the velocity E is changed into V,--. E-a-E At; in the collision stage, Fi--~ E-(~. g~j)ai with probability equal to 4na20(~ • gi/)(a/• gij)z(n)n At, where ~ is a random unit vector, a is the diameter of the spheres, gij -z Vi -V/-aa • ~., ~ being the velocity of a random partner j, and z(n) is the equilibrium pair correlation function at contact. The kinetic and collisional transfer contributions to the pressure tensor are calculated as functions of density. The Navier-Stokes shear viscosity is seen to agree with the theoretical value. Furthermore, the nonlinear Bumett coefficients associated with normal stresses are obtained.


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