Adjoint optimization of pressurized membrane structures using automatic differentiation tools

Author:

Niewiarowski AlexanderORCID,Adriaenssens SigridORCID,Pauletti Ruy MarceloORCID

Funder

Princeton Environmental Institute, Princeton University

Publisher

Elsevier BV

Subject

Computer Science Applications,General Physics and Astronomy,Mechanical Engineering,Mechanics of Materials,Computational Mechanics

Reference70 articles.

1. A. Niewiarowski, A. Rock, S. Adriaenssens, M. Chiaramonte, Pneumatic storm surge barriers subject to hydrodynamic loading, in: Creat. Struct. Des. Proc. IASS Annu. Symp. 2018, Boston, 2018.

2. M.C. Van Breukelen, Improvement and scale enlargement of the inflatable rubber barrier concept: A case study applicable to the Bolivar Roads barrier, Texas, USA, 2013. uuid:3fb26157-ac79-491f-a3bb-94f7fb4d1f61.

3. J. Goodglass, A. Niewiarowski, S. Adriaenssens, The effect of internal pressure on the mechanical behavior of a new type of flexible, pressurized, deployable storm-surge barrier, in: 2nd Int. Conf. New Horizons Green Civ. Eng., Victoria, British Columbia, 2020.

4. Finite element analysis of air supported membrane structures;Bonet;Comput. Methods Appl. Mech. Engrg.,2000

5. Displacement dependent pressure loads in nonlinear finite element analyses;Schweizerhof;Comput. Struct.,1984

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