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SU2: An Open-Source Suite for Multiphysics Simulation and Design

AIAA Journal · 2015 · Vol. 54(3) · pp. 828–846
Thomas D. EconomonFrancisco PalaciosSean R. CopelandTrent LukaczykJuan J. Alonso

Abstract

This paper presents the main objectives and a description of the SU2 suite, including the novel software architecture and open-source software engineering strategy. SU2 is a computational analysis and design package that has been developed to solve multiphysics analysis and optimization tasks using unstructured mesh topologies. Its unique architecture is well suited for extensibility to treat partial-differential-equation-based problems not initially envisioned. The common framework adopted enables the rapid implementation of new physics packages that can be tightly coupled to form a powerful ensemble of analysis tools to address complex problems facing many engineering communities. The framework is demonstrated on a number, solving both the flow and adjoint systems of equations to provide a high-fidelity predictive capability and sensitivity information that can be used for optimal shape design using a gradient-based framework, goal-oriented adaptive mesh refinement, or uncertainty quantification.

Computational Fluid Dynamics and AerodynamicsModel Reduction and Neural NetworksAdvanced Numerical Methods in Computational MathematicsMultiphysicsSuiteComputer scienceComputational scienceSoftware suiteExtensibilitySoftwareDistributed computingComputer engineeringSystems engineering
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887
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30.51
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53
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References
A New Flux Splitting Scheme
Journal of Computational Physics · 1993 · 1,406 citations
Approximate Riemann solvers, parameter vectors, and difference schemes
Journal of Computational Physics · 1981 · 8,995 citations
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