General-domain FC-based shock-dynamics solver II: Non-smooth domains, accuracy and parallel performance

Fuente: arXiv
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Main Authors: Leibovici, Daniel V., Bruno, Oscar P.
Format: Preprint
Published: 2025
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author Leibovici, Daniel V.
Bruno, Oscar P.
author_facet Leibovici, Daniel V.
Bruno, Oscar P.
contents This contribution Part II of a two-part series, extends the general-domain FC-SDNN (Fourier Continuation Shock-Detecting Neural Network) introduces in Part I to enable treatment of non-smooth domains, it introduces a parallel implementation of the scheme with high-quality weak and strong scalability properties, and it illustrates the overall methodology for a variety of tests for the 2D Euler equations--including supersonic and hypersonic flows and shocks past obstacles with corners. The results produces by the new methods are compared to previous theoretical and experimental results, and the high parallel scalability of the algorithm is demonstrated in both weak and strong scaling cases. Thanks to its use of a localized yet smooth artificial viscosity term--whose support is confined to regions near flow discontinuities identified by an artificial neural network--the algorithm maintains minimal numerical dissipation away from discontinuities. Overall, the method delivers accurate, sharp resolution of shocks and contact discontinuities, while producing smooth numerical solutions in regular flow regions--as evidences by the near-complete absence of spurious oscillations in level-set contours, even under strong shocks and high-speed flow conditions.
format Preprint
id arxiv_https___arxiv_org_abs_2506_19370
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle General-domain FC-based shock-dynamics solver II: Non-smooth domains, accuracy and parallel performance
Leibovici, Daniel V.
Bruno, Oscar P.
Numerical Analysis
Fluid Dynamics
This contribution Part II of a two-part series, extends the general-domain FC-SDNN (Fourier Continuation Shock-Detecting Neural Network) introduces in Part I to enable treatment of non-smooth domains, it introduces a parallel implementation of the scheme with high-quality weak and strong scalability properties, and it illustrates the overall methodology for a variety of tests for the 2D Euler equations--including supersonic and hypersonic flows and shocks past obstacles with corners. The results produces by the new methods are compared to previous theoretical and experimental results, and the high parallel scalability of the algorithm is demonstrated in both weak and strong scaling cases. Thanks to its use of a localized yet smooth artificial viscosity term--whose support is confined to regions near flow discontinuities identified by an artificial neural network--the algorithm maintains minimal numerical dissipation away from discontinuities. Overall, the method delivers accurate, sharp resolution of shocks and contact discontinuities, while producing smooth numerical solutions in regular flow regions--as evidences by the near-complete absence of spurious oscillations in level-set contours, even under strong shocks and high-speed flow conditions.
title General-domain FC-based shock-dynamics solver II: Non-smooth domains, accuracy and parallel performance
topic Numerical Analysis
Fluid Dynamics
url https://arxiv.org/abs/2506.19370