Tensor Networks for Solving the PDF/FDF Transport
ORAL
Abstract
The PDF-FDF methodologies have proven very effective for RANS-LES of chemically reactive turbulent flows. Due to their inherent capabilities, the equations governing the transport of PDF/FDF are high dimensional. It is shown that “tensor networks” (TN) can deal with such a large dimensional transport in a very effective manner. These networks are employed here to tackle the Fokker-Planck form of the PDF/FDF instead of the Langevin form as is typically done via Monte Carlo methodologies. Demonstrative simulations are conducted of a chemically reactive flow, governed by a time-dependent five-dimensional modelled Fokker-Planck equation.
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Presenters
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Nikita Gourianov
University of Pittsburgh
Authors
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Peyman Givi
University of Pittsburgh
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Nikita Gourianov
University of Pittsburgh
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Juan José Mendoza Arenas
University of Pittsburgh
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Dieter Jaksch
University of Oxford, University of Hamburg
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Stephen B Pope
Cornell University