Abstract
Smooth Particle Applied Mechanics provides a novel method for solving the basic equations of continuum mechanics. The method is simple to implement, very stable, and applicable to a variety of far-from-equilibrium situations. It provides an interesting bridge between atomistic and continuum simulations. Here we describe our general explorations of the method, emphasizing recent results for the Rayleigh-Benard problem, a heat conducting flow driven by a convective instability.
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CITATION STYLE
Hoover, Wm. G., Hoover, C. G., Kum, O., & Castillo, V. M. (1996). SMOOTH PARTICLE APPLIED MECHANICS. Computational Methods in Science and Technology, 2(1), 65–72. https://doi.org/10.12921/cmst.1996.02.01.65-72
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