Influence of the internal dynamics of the interacting coherent vortex structures to the generated sound field
Тип публікації :
Стаття
Дата випуску :
2021
Автор(и) :
Коновалюк, Т. П.
Краснопольська, Т. С.
Печук, Є. Д.
Мова основного тексту :
Англійська
eKNUTSHIR URL :
Випуск :
3
ISSN :
1812-5409
Початкова сторінка :
51
Кінцева сторінка :
54
Цитування :
[APA 7] Коновалюк, Т. П., Краснопольська, Т. С., & Печук, Є. Д. (2021). Influence of the internal dynamics of the interacting coherent vortex structures to the generated sound field. Bulletin of Taras Shevchenko National University of Kyiv. Physics and Mathematics, (3), 51–54. https://doi.org/10.17721/1812-5409.2021/3.7
[ДСТУ] Коновалюк Т. П., Краснопольська Т. С., Печук Є. Д. Influence of the internal dynamics of the interacting coherent vortex structures to the generated sound field. Bulletin of Taras Shevchenko National University of Kyiv. Physics and Mathematics. 2021. no. 3. P. 51—54. DOI: 10.17721/1812-5409.2021/3.7 (date of access: 25.07.2026).
The article is dedicated to the glowing memory of the talented Ukrainian scientist-mechanic, professor, doctor of physical and mathematical sciences Vyacheslav Vladimirovich Meleshko. The sound fields of several coherent vortex structures interacting with each other were calculated using the moment model (MZS-model) of the first and second orders. In the first-order MZS-model, vortices are described by point vortices, in the second-order MZS-model--by Kirchhoff vortices. Sound fields as a result of vortex interaction are calculated using the Lighthill's acoustic analogy under Powell's formulation. The spectrum of the sound field in the description of coherent vortices by point vortices is characterized by a single frequency band, which reflects the motion of the vortex centers of vortices (large-scale vortex movements). Taking into account the inner vortex dynamics leads to the expansion of spectrum and level increasing of calculated sound: the lower band describes the motion of the vorticity centers of spots, the higher band describes the internal dynamics of the vorticity. It is shown that large-scale vortex movements can be modeled by point vortices, when the sound spectrum of distributed vortices is clearly divided into bands and the width of the lower frequency band is close to the width of the sound spectrum from point vortices. The presence of an upper frequency band in the sound field of interacting vortex spots does not allow us to describe the distributed vortices as point vortices when constructing a sound source, since such a simplification leads to a significant underestimation of the level of the calculated sound field.
Pages of the article in the issue: 51 - 54
Language of the article: Ukrainian
Pages of the article in the issue: 51 - 54
Language of the article: Ukrainian
Файл(и) :![Ескіз]()
Вантажиться...
Формат :
Adobe PDF
Розмір :
4.08 MB
Контрольна сума :
(MD5):7f3c3e01f89e86fd69e5f591f4a1a79a
Якщо не вказано інше, ця робота розповсюджується на умовах ліцензії Creative Commons Attribution 4.0 International

