CompressibleFluids.jl
An implementation of compressible fluid dynamics equations found in the text Gas Dynamics 3rd edition by John and Keith.
An implementation of compressible fluid dynamics equations found in the text Gas Dynamics 3rd edition by John and Keith.
A simple implementation of DLT for particle tracking across images in Julia.
A collection of dynamic stall models.
A collection of methods for conducting particle image velocimetry using Julia.
A toolkit for nonlinear unsteady aeroelastic modeling of wind turbine blades, specifically designed for derivative computation.
A course on the fundamentals of research in engineering.
Published in AIAA SciTech 2022 Forum, San Diego, CA, 2022
High-fidelity aerostructural analyses are integrated into gradient-based wind turbine rotor optimization.
Recommended citation: Caprace, D. G., Cardoza, A., Ning, A., Mangano, M., He, S., & Martins, J. R. R. A. (2022). "Incorporating High-Fidelity Aerostructural Analyses in Wind Turbine Rotor Optimization." AIAA SciTech 2022 Forum, San Diego, CA. doi:10.2514/6.2022-1290
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Published in AIAA SciTech 2022 Forum, San Diego, CA, 2022
A general coupling methodology enables unsteady aerostructural optimization with efficient analytic derivatives.
Recommended citation: McDonnell, T., Cardoza, A., Caprace, D. G., & Ning, A. (2022). "A General Coupling Methodology for Unsteady Aerostructural Optimization with Analytic Derivatives." AIAA SciTech 2022 Forum, San Diego, CA. doi:10.2514/6.2022-1291
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Published in Wind Energy Science, 2026
Efficient gradient computation enables the inclusion of unsteady effects such as fatigue in aero-structural wind turbine blade optimization.
Recommended citation: Cardoza, A., & Ning, A. (2026). "Efficient derivative computation for unsteady fatigue-constrained nonlinear aero-structural wind turbine blade optimization." Wind Energy Science, 11(4), 1487–1504. doi:10.5194/wes-11-1487-2026
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Tutorial, Brigham Young University, 2025