L.K. Wang, A. Acovic, et al.
MRS Spring Meeting 1993
The pressure in a thin film of gas undergoing laminar, isothermal flow is given by the so-called Reynolds equation, a nonlinear, second-order, partial differential equation of parabolic type. The Reynolds equation plays a central role in the theory of gas-film lubrication. This paper is devoted to a study of numerical procedures based upon finite differences for obtaining approximate solutions. A number of explicit, semi-explicit, and implicit difference schemes are examined from the point of view of truncation error, stability, and computational efficiency. © 1963 by ASME.
L.K. Wang, A. Acovic, et al.
MRS Spring Meeting 1993
Revanth Kodoru, Atanu Saha, et al.
arXiv
A.B. McLean, R.H. Williams
Journal of Physics C: Solid State Physics
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