Efficient Numeric Computation of a Phase Diagram in Biased Diffusion of Two Species
A lattice gas with equal numbers of oppositely charged particles, diffusing under the influence of a uniform electric field and an excluded volume condition undergoes an order-disorder phase transition, controlled by the particle density and the field strength. This transition may be continuous (sec...
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ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-328962020-09-29T05:39:39Z Efficient Numeric Computation of a Phase Diagram in Biased Diffusion of Two Species Parks, Michael Lawrence Computer Science Ribbens, Calvin J. Zia, Royce K. P. Allison, Donald C. S. Schmittmann, Beate Phase Transition Nonlinear Gauss-Seidel Driven Lattice Gas A lattice gas with equal numbers of oppositely charged particles, diffusing under the influence of a uniform electric field and an excluded volume condition undergoes an order-disorder phase transition, controlled by the particle density and the field strength. This transition may be continuous (second order) or continuous (first order). Results from previous discrete simulations are shown, and a theoretical continuum model is developed. As this is a nonequilibrium system, there is no associated free energy to determine the location of a first order transition. Instead, the model equations for this system are evolved in time numerically, and the locus of this transition is determined via the presence of a stable state with coexisting regions of order and disorder. The Crank-Nicholson, nonlinear Gauss-Seidel, and GMRES algorithms used to solve the model equations are discussed. Performance enhancements and limits on convergence are considered. Master of Science 2014-03-14T20:37:19Z 2014-03-14T20:37:19Z 2000-05-09 2000-05-17 2001-05-23 2000-05-23 Thesis etd-05172000-14430029 http://hdl.handle.net/10919/32896 http://scholar.lib.vt.edu/theses/available/etd-05172000-14430029/ phi-i.avi psi-h.avi psi-i.avi thesis.pdf phi-h.avi In Copyright http://rightsstatements.org/vocab/InC/1.0/ application/octet-stream application/octet-stream application/octet-stream application/pdf application/octet-stream Virginia Tech |
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Phase Transition Nonlinear Gauss-Seidel Driven Lattice Gas |
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Phase Transition Nonlinear Gauss-Seidel Driven Lattice Gas Parks, Michael Lawrence Efficient Numeric Computation of a Phase Diagram in Biased Diffusion of Two Species |
description |
A lattice gas with equal numbers of oppositely charged particles, diffusing under the influence of a uniform electric field and an excluded volume condition undergoes an order-disorder phase transition, controlled by the particle density and the field strength. This transition may be continuous (second order) or continuous (first order). Results from previous discrete simulations are shown, and a theoretical continuum model is developed. As this is a nonequilibrium system, there is no associated free energy to determine the location of a first order transition. Instead, the model equations for this system are evolved in time numerically, and the locus of this transition is determined via the presence of a stable state with coexisting regions of order and disorder. The Crank-Nicholson, nonlinear Gauss-Seidel, and GMRES algorithms used to solve the model equations are discussed. Performance enhancements and limits on convergence are considered. === Master of Science |
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Computer Science |
author_facet |
Computer Science Parks, Michael Lawrence |
author |
Parks, Michael Lawrence |
author_sort |
Parks, Michael Lawrence |
title |
Efficient Numeric Computation of a Phase Diagram in Biased Diffusion of Two Species |
title_short |
Efficient Numeric Computation of a Phase Diagram in Biased Diffusion of Two Species |
title_full |
Efficient Numeric Computation of a Phase Diagram in Biased Diffusion of Two Species |
title_fullStr |
Efficient Numeric Computation of a Phase Diagram in Biased Diffusion of Two Species |
title_full_unstemmed |
Efficient Numeric Computation of a Phase Diagram in Biased Diffusion of Two Species |
title_sort |
efficient numeric computation of a phase diagram in biased diffusion of two species |
publisher |
Virginia Tech |
publishDate |
2014 |
url |
http://hdl.handle.net/10919/32896 http://scholar.lib.vt.edu/theses/available/etd-05172000-14430029/ |
work_keys_str_mv |
AT parksmichaellawrence efficientnumericcomputationofaphasediagraminbiaseddiffusionoftwospecies |
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1719344795269201920 |