TY - GEN
T1 - Verification of the Unified Coordinate System by the Method of Manufactured Solutions
AU - Nathan Woods, C.
AU - Starkey, Ryan P.
PY - 2014
Y1 - 2014
N2 - Although computational uid dynamics has revolutionized aerodynamic analysis, it has remained less useful for preliminary design because of the difficulties associated with generating a computational grid. Hui's unified coordinate system has the potential to alleviate this concern by virtue of its automatically generated grid, but the method needs more study and development. We present a formal verification of the unified coordinate system in one dimension using both exact and manufactured solutions, including an integrative extension of the method of manufactured solutions which allows for discontinuities. This will provide the framework necessary to evaluate algorithmic improvements to the method, and provide confidence in the unified coordinate system as a tool for aerodynamic design, where its unique characteristics make it an extremely valuable alternative to traditional methods. First-order convergence is observed with a first-order method, while convergence is less for discontinuous solutions, as expected. The integrative method of manufactured solutions performs well, providing formal verification with a discontinuous, manufactured, solution.
AB - Although computational uid dynamics has revolutionized aerodynamic analysis, it has remained less useful for preliminary design because of the difficulties associated with generating a computational grid. Hui's unified coordinate system has the potential to alleviate this concern by virtue of its automatically generated grid, but the method needs more study and development. We present a formal verification of the unified coordinate system in one dimension using both exact and manufactured solutions, including an integrative extension of the method of manufactured solutions which allows for discontinuities. This will provide the framework necessary to evaluate algorithmic improvements to the method, and provide confidence in the unified coordinate system as a tool for aerodynamic design, where its unique characteristics make it an extremely valuable alternative to traditional methods. First-order convergence is observed with a first-order method, while convergence is less for discontinuous solutions, as expected. The integrative method of manufactured solutions performs well, providing formal verification with a discontinuous, manufactured, solution.
UR - https://www.scopus.com/pages/publications/84902814246
M3 - Conference contribution
AN - SCOPUS:84902814246
SN - 9781624102561
T3 - 52nd AIAA Aerospace Sciences Meeting - AIAA Science and Technology Forum and Exposition, SciTech 2014
BT - 52nd AIAA Aerospace Sciences Meeting - AIAA Science and Technology Forum and Exposition, SciTech 2014
PB - American Institute of Aeronautics and Astronautics Inc.
T2 - 52nd AIAA Aerospace Sciences Meeting - AIAA Science and Technology Forum and Exposition, SciTech 2014
Y2 - 13 January 2014 through 17 January 2014
ER -