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Эта публикация цитируется в 1 научной статье (всего в 1 статье)
Nonlinear physics and mechanics
Physically Admissible and Inadmissible Exact Localized
Solutions in Problems of Nonlinear Wave Dynamics
of Cylindrical Shells
A. I. Zemlyanukhin, A. V. Bochkarev, N. A. Artamonov Gagarin State Technical University of Saratov,
ul. Politekhnicheskaya 77, Saratov, 410054 Russia
Аннотация:
It is shown that, when studying nonlinear longitudinal deformation waves in cylindrical
shells, it is possible to obtain physically admissible solitary wave solutions using refined shell
models. In the article, a physically admissible exact localized solution based on the Flügge –
Lurie – Byrne model is constructed. An analysis of the influence of the external nonlinear elastic
medium on the exact solutions obtained is carried out. It is established that the use of quadratic
and cubic nonlinear deformation laws leads to nonintegrable equations with exact soliton-like
solutions. However, the amplitudes of the exact solutions exceed the values of permissible dis-
placements corresponding to the maximum points on the curves of the deformation laws of the
external medium, which leads to the physical inadmissibility of these solutions.
Ключевые слова:
cylindrical shell, solitary wave solution, physically admissible solution, nonlinear
deformation law, refined shell model
Поступила в редакцию: 29.02.2024 Принята в печать: 03.06.2024
Образец цитирования:
A. I. Zemlyanukhin, A. V. Bochkarev, N. A. Artamonov, “Physically Admissible and Inadmissible Exact Localized
Solutions in Problems of Nonlinear Wave Dynamics
of Cylindrical Shells”, Rus. J. Nonlin. Dyn., 20:2 (2024), 219–229
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/nd891 https://www.mathnet.ru/rus/nd/v20/i2/p219
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