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Dive into the research topics where Douglas L. Stefanski is active.

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Featured researches published by Douglas L. Stefanski.


54th AIAA Aerospace Sciences Meeting | 2016

Introduction to COFFE: The Next-Generation HPCMP CREATE-AV CFD Solver

Ryan S. Glasby; J. Taylor Erwin; Douglas L. Stefanski; Steven R. Allmaras; Marshall C. Galbraith; W. Kyle Anderson; Robert H. Nichols

HPCMP CREATE-AV Conservative Field Finite Element (COFFE) is a modular, extensible, robust numerical solver for the Navier-Stokes equations that invokes modularity and extensibility from its first principles. COFFE implores a flexible, class-based hierarchy that provides a modular approach consisting of discretization, physics, parallelization, and linear algebra components. These components are developed with modern software engineering principles to ensure ease of uptake from a users or developers perspective. The Streamwise Upwind/Petrov-Galerkin (SU/PG) method is utilized to discretize the compressible Reynolds-Averaged Navier-Stokes (RANS) equations tightly coupled with a variety of turbulence models. The mathematics and the philosophy of the methodology that makes up COFFE are presented.


46th AIAA Fluid Dynamics Conference | 2016

High-Order Mesh Curving Using WCN Mesh Optimization

Steve L. Karman; Jon T. Erwin; Ryan S. Glasby; Douglas L. Stefanski


55th AIAA Aerospace Sciences Meeting | 2017

Results from HPCMP CREATETM-AV Kestrel Component COFFE for the 6th Drag Prediction Workshop Cases

Jon T. Erwin; Ryan S. Glasby; Douglas L. Stefanski; Steve L. Karman


2018 AIAA Aerospace Sciences Meeting | 2018

High-Order Time-Accurate Simulations using HPCMP CREATE(TM)-AV Kestrel Component COFFE

Kevin R. Holst; Ryan S. Glasby; Jon T. Erwin; Douglas L. Stefanski; Ryan B. Bond


2018 AIAA Aerospace Sciences Meeting | 2018

High-Order Large Eddy Simulation Validation in HPCMP CREATE(TM)-AV Kestrel Component COFFE

Kevin R. Holst; Ryan S. Glasby; Jon T. Erwin; Douglas L. Stefanski; Ryan B. Bond


Journal of Aircraft | 2017

Comparison of Fixed and Adaptive Unstructured Grid Results for Drag Prediction Workshop 6

Todd R. Michal; Deric Babcock; Dmitry S. Kamenetskiy; Joshua Krakos; Mortaza Mani; Ryan S. Glasby; Taylor Erwin; Douglas L. Stefanski


55th AIAA Aerospace Sciences Meeting | 2017

Results from HPCMP CREATETM-AV Kestrel Components KCFD and COFFE for the Open Source Fighter

David Hine; Ryan S. Glasby; Jon T. Erwin; Douglas L. Stefanski


55th AIAA Aerospace Sciences Meeting | 2017

Finite-element solutions to the Reynolds Averaged Navier-Stokes equations using a Spalart-Allmaras Turbulence Model

Nicholas K. Burgess; Ryan S. Glasby; Jon T. Erwin; Douglas L. Stefanski; Steven R. Allmaras


2018 Fluid Dynamics Conference | 2018

A Modified k-ω Turbulence Model for Finite-Element CFD

Douglas L. Stefanski; Ryan S. Glasby; Jon T. Erwin; Steven R. Allmaras; James G. Coder; Nicholas K. Burgess


2018 AIAA Information Systems-AIAA Infotech @ Aerospace | 2018

Strategy for Fine-Grained Parallelism in Multi-Level Computational Engineering Solvers

Stephen L. Wood; Chad Burdyshaw; Jon T. Erwin; Douglas L. Stefanski; Ryan S. Glasby; Gregory D. Peterson

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Jon T. Erwin

University of Tennessee

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Ryan B. Bond

University of Tennessee

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Steven R. Allmaras

Massachusetts Institute of Technology

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J. Taylor Erwin

University of Tennessee at Chattanooga

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