[cNN-DP: Composite neural network with differential propagation]
Codes: https://github.com/KHU-MASLAB/cNN-DP.git
Refs: Lee, H., Han, S., Choi, H. S., & Kim, J. G. (2024). cNN-DP: Composite neural network with differential propagation for impulsive nonlinear dynamics. Journal of Computational Physics, 496, 112578.
[Projection based model reduction of 2D Vibro-acoustic model]
Codes: https://github.com/KHU-MASLAB/Vibroacoustic_ROM.git
Refs: Kim, S. M., Kim, J. G., Chae, S. W., & Park, K. C. (2019). A strongly coupled model reduction of vibro-acoustic interaction. Computer Methods in Applied Mechanics and Engineering, 347, 495-516.
[Example of Craig-Bampton (CB) and Enhanced CB (ECB) codes]
Codes: https://github.com/KHU-MASLAB/Enhanced-CB.git
Refs: JG Kim, PS Lee. An enhanced Craig-Bampton method, International Journal for Numerical Methods in Engineering, 103, 79-93, 2015 (See Journal [J7]).
[Example of two dimensional hydroelastic codes: floating beam]
Codes: https://github.com/KHU-MASLAB/Hydroelastic_2D_floating-beam.git
Ref: JG Kim, SP Cho, KY Kim, PS Lee, Hydroelastic design contour for the preliminary design of very large floating structures, Ocean Engineering, 78, 112-123, 2014 (See Journal [J3]).
[Presentation and poster templates]
https://github.com/maslab-khu/templates.git
Presentation templates: [T1] Templete_M&S2019.pptx and [T2] M&S_beamer.zip (presentation beamer template, LaTeX format)
Poster template: [T3] poster_format_example.pptx
[RecurDyn student version link]
Link: https://support.functionbay.com/ko/downloads/recurdyn-student-version
[M&S lab logo]
Link: logo link