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COMPUTATIONAL PHYSICS
Our experience covers most of the numerical techniques in use nowadays in this field: finite differences, finite volumes, spectral methods, high-order compact schemes, boundary elements, many-body simulations, smooth particle hydrodynamics, particle-particle-mesh, Lattice Boltzmann Methods.
We support users during the development and optimization of the codes, for the data analysis, the management of data sets produced by the simulations, and in the choice of the most suitable visualization techniques for their results.
We collaborate with the Department of Mechanics and Aeronautics of "La Sapienza" University and with the Italian National Agency for New Technologies, Energy and the Environment (ENEA) on the study of turbulence and combustion processes. Other projects involve the Institute for Applied Computing (part of the Italian National Research Council) and "Tor Vergata" University (Lattice Boltzmann Methods), along with the University of Bari and "Basilicata" University (Binary Fluids De-mixing). |
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