Memory Efficient Singular Finite Element Method for Flow of Viscoelastic Fluids
Author:
Affiliation:
1. Department of Life Science and Applied Chemistry, Graduate School of Engineering, Nagoya Institute of Technology
Publisher
Society of Chemical Engineers, Japan
Subject
General Chemical Engineering,General Chemistry
Link
https://www.jstage.jst.go.jp/article/jcej/53/8/53_19we152/_pdf
Reference19 articles.
1. Apelian, M. R., R. C. Armstrong and R. A. Brown; “Impact of the Constitute Equation and Singularity on the Calculation of Stick–Slip Flow: The Modified Upper-convected Maxwell Model (MUCM),” J. Non-Newt. Fluid Mech., 27, 299–321 (1988)
2. Beris, A. N., R. C. Armstrong and R. A. Brown; “Spectral/Finite-Element Calculations of the Flow of a Maxwell Fluid between Eccentric Rotating Cylinders,” J. Non-Newt. Fluid Mech., 22, 129–167 (1987)
3. Evans, R. E. and K. Walters; “Further Remarks on the Lip-Vortex Mechanism of Vortex Enhancement in Planar-Contraction Flows,” J. Non-Newt. Fluid Mech., 32, 95–105 (1989)
4. Fontelos, M. A. and A. Friedman; “The Flow of a Class of Oldroyd Fluids around a Re-Entrant Corner,” J. Non-Newt. Fluid Mech., 95, 185–198 (2000)
5. Georgiou, G. C., L. G. Olson, W. W. Schultz and S. Sagan; “Singular Finite Elements for Stokes Flow: the Stick–Slip Problems,” Int. J. Numer. Methods Fluids, 9, 1353–1367 (1989)
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