March 2026

Conference Paper

A Scaling Study for Incompressible Multispecies Solver in Vertex-CFD

By:
Oz, Furkan ; Pieper, Konstantin ; Delchini, Marc Olivier ; Gurecky, William L
Page Number:
1-14
Book Title:
American Institute of Aeronautics and Astronautics (AIAA) SCITECH 2026 Forum Proceedings
Publication Date:
March 2026
Conference Name:
American Institute of Aeronautics and Astronautics (AIAA) SciTech 2026
Conference Location:
Orlando, Florida, United States of America
Conference Sponsor:
American Institute of Aeronautics and Astronautics (AIAA)
View DOI Listing:
https://doi.org/10.2514/6.2026-2516

Abstract

Multispecies incompressible flows occur widely in engineering and environmental applications, such as chemical reactors, fuel cells, ocean mixing, and biomedical systems. However, accurately resolving the complex transport and mixing phenomena associated with multiple interacting species remains computationally challenging, especially for large-scale problems. In this study, we present a robust, high-performance computing--enabled multispecies incompressible Navier–Stokes solver integrated within the Vertex-CFD framework. Our solver employs a fully coupled, implicit, finite element--based formulation that accurately captures the advection, diffusion, and interaction of multiple species in incompressible flows by leveraging the Kokkos library for parallel computing to achieve high computational efficiency. For pressure coupling, the entropically damped artificial compressibility method is utilized. We validated the solver against canonical test cases, including multispecies advection, diffusion, and Bateman systems; the results demonstrate second- and third-order spatial accuracy and consistent convergence. Additionally, we demonstrated the strong and weak scaling study results obtained on the leadership-class high-performance computing system, Frontier at Oak Ridge National Laboratory.