Modeling Damping for a Loaded Spring in an Acoustic Liquid Media
DOI:
https://doi.org/10.18034/ei.v4i1.181Keywords:
Oscillations, Acoustics, free vibrations, discrete systemAbstract
Free vibrating motion can take place in an acoustic media. This motion can be steady hence have constant periodic variations or unsteady and thus experience light damping or heavy damping. We give a modeled analysis of unsteady periodic motion of an oscillator in a cylindrical acoustic medium that allow such waves to be transmitted through them. This has been approached by calculating variation within the proposed boundary functions and boundary potentials. Limitations for these calculations have been done depending on the time, and how free oscillations are expected to behave in cylinder carrying a suspended mass. This work investigated motion by constructions that interact with their environment with the acoustic media. Since the dynamics considered here were very complex, modeling the system with one grade of free motion and applying different types of constructions whether ground, underground, cylindrical, spherical constructions and containers was considered. This work borrowed heavily on the modeling of seismic and blast waves as modeled with rigid inclusions containing elastically fastened mass interacting continuous solid medium. This study joined motion of any continuous medium with other discrete systems. The results displayed measurement systems for wave processes having interference at their eigen- frequencies just like those under seismic wave interactions and this work considered the result as similar to those in discrete systems.
Downloads
References
Agalarova T.D. (1997); Interaction of acoustic wave with the oscillator. Сollection of scinetific works on Mechanics, 7: 181-184
Chen S.S., Wambsganss M. W., Jendrzejczyk J.A. (1976), Added mass and damping of a vibration rod in confined viscous fluid. Trans. ASME. J.Appl. Mech. 43: 325-329.
Gorshkov А. G., Tarlakovskii D. V. (1990); Unsteady aero hydro elasticity of bodies with spherical form; Phys. And Матh. Меt., ISBN-5-20-14006-6.
Huang H., Lu Y.P., Wang Y. (1974); Transient interaction of spherical acoustic waves of a cylindrical elastic shell and its internal multi-degree-of –freedom mechanical systems, J. Acoust. Soc. America , 56: 4-10.
Mamedova G.А, Rustamova M. А., Agasiyev S.Р. (2013); Investigation of free oscillations of the spherical shell with fluid by inverse method. Eastern European Journal ofadvancedtechnologies, 66:16-20.
Mosiori, C. (2014). Synthesis Procedures for Silver Nanoparticles. Engineering International, 2(2), 87-90.
Mosiori, C., Maera, J., Njoroge, W., Shikambe, T., Munji, M., & Magare, R. (2015). Modeling Transfer of Electrons between Energy States of an Electrolyte and CdS thin Films using Gerischer Model. Engineering International, 3(1), 35-44.
Seyfullayev A. I, Rustamova M. A., Agasiev S. R. (2014); Free oscillations of two concentrically located cylindrical shells with a fluid between them. International Journal of Engineering and Innovative Technology , 3: 33-37
Seyfullayev А. I., Mаmedova G.А., Rustamova М. А., Yuzbashiyeva A. О. (2012); Analyzes of free oscialltions of thin – walled cylindrical shells containing a compressible liquid. Engen-Phys. Journ., 85:134-149
Seyfullayev А.I., Аgayeva N.А. (1998); Solution of the problem on motion of the spherical inclusion with the spring body in the acoustic medium., Phys.–tech-and math. sciences, 18: 133-135.
Sinyavskii V.F, Phedotovskii V.S., Kukhtin A.B. (1980), On vibrations of the cylinder in a viscous liquid. Applied Mechanics, XVI: 62-67.
--0--
Published
Issue
Section
License
Engineering International is an Open Access journal. Authors who publish with this journal agree to the following terms:
- Authors retain copyright and grant the journal the right of first publication with the work simultaneously licensed under a CC BY-NC 4.0 International License that allows others to share the work with an acknowledgment of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of their work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgment of its initial publication in this journal. We require authors to inform us of any instances of re-publication.