Download High Performance Computing in Science and Engineering ‘13: by Jiajia Zhou, Friederike Schmid (auth.), Wolfgang E. Nagel, PDF

By Jiajia Zhou, Friederike Schmid (auth.), Wolfgang E. Nagel, Dietmar H. Kröner, Michael M. Resch (eds.)

This e-book offers the cutting-edge in simulation on supercomputers. major researchers current effects completed on structures of the excessive functionality Computing middle Stuttgart (HLRS) for the 12 months 2013. The stories hide all fields of computational technological know-how and engineering starting from CFD through computational physics and chemistry to desktop technology with a different emphasis on industrially correct purposes. providing result of certainly one of Europe’s top platforms this quantity covers a large choice of functions that carry a excessive point of sustained functionality. The e-book covers the most equipment in excessive functionality computing. Its remarkable leads to attaining optimum functionality for construction codes are of specific curiosity for either the scientist and the engineer. The e-book comes with a wealth of colored illustrations and tables of results.

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Extra info for High Performance Computing in Science and Engineering ‘13: Transactions of the High Performance Computing Center, Stuttgart (HLRS) 2013

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221, 1 (2009) 19. J. A. Koelman, Europhys. Lett. 19, 155 (1992) 20. A. J. Hoogerbrugge, Europhys. Lett. 21, 363 (1993) 21. P. B. Warren, Europhys. Lett. 30, 191 (1995) 22. D. B. Warren, J. Chem. Phys. 107, 4423 (1997) 23. J. Smiatek, M. Sega, C. D. Schiller, F. Schmid, J. Chem. Phys. 130, 244702 (2009) 24. H. Limbach, A. Arnold, B. Mann, C. Holm, Comput. Phys. Commun. 174, 704 (2006) 25. J. Smiatek, M. Allen, F. Schmid, Eur. Phys. J. E 26, 115 (2008) 26. D. Weeks, D. C. Andersen, J. Chem. Phys.

The charge on the colloid is small, Q D 10 e, to ensure that the zeta-potential is also small. The simulation results and the theoretic predictions agree well, except at very large salt concentration (large ÄR value). One possible explanation to the discrepancy is the change of microion’s diffusion constant with respect to the salt concentration (see Fig. 1), which is not taken into account in the electrokinetic theory. 4 Summary We have developed a mesoscopic colloid model based on the Dissipative Particle Dynamics.

3) and spherical (Sect. 4) confinements is given. Section 5 then contains some representative results on the kinetics of phase separation, while Sect. 6 summarizes our conclusions. 2 Models and Methods For the study of the vapor-liquid like phase transitions, polymers are included explicitly, while for liquid-solid transitions their effect is included only implicity via a suitable effective potential, that can be exactly derived from the AO model, by integrating out the polymer degrees of freedom, if the size ratio q D p = c < 0:154 (we denote the diameter of the polymers by p , and of the colloids by c , respectively).

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