Modern software capabilities for shape optimization of shells

The article is devoted to the shape optimization of shell structures in Comsol Multiphysics using three gradient-based methods: IPOPT (Interior Point OPTimizer), SNOPT (Sparse Nonlinear OPTimizer) and MMA or GCMMA (the Method of Moving Asymptotes). Two types of complex shapes, such as right helicoid and developable helicoid are taken for the computational experiment. The task is to investigate the initial design and optimization process of two helicoids. To obtain a more accurate result and an interesting design solution, the calculation is carried out using three physics-controlled mesh sizes: extra coarse, fine and extra fine with varying values of special optimization settings, such as maximum displacement (dmax) and filter radius (Rmin). The results obtained using these three methods allow to conclude that the studied parameters dmax and Rmin have a significant impact on the final optimization result. © 2024, Publishing House of Natural Science and Technology, VAST. All rights reserved.

Авторы
Rynkovskaya M. , Ermakova E.
Издательство
Publishing House of Natural Science and Technology, VAST
Номер выпуска
1
Язык
Английский
Страницы
184-194
Статус
Опубликовано
Том
62
Год
2024
Организации
  • 1 Department of Civil Engineering, Peoples’ Friendship University of Russia named after Patrice Lumumba (RUDN University), 6 Miklukho-Maklaya Str., Moscow, 117198, Russian Federation
Ключевые слова
filter radius; gradient-based method; helicoid; maximum displacement; Shape optimization
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