Back to Search Start Over

Propulsive Motion of Cylindrical Vibration-Driven Robot in a Viscous Fluid

Authors :
V. D. Anisimov
A. G. Egorov
A. N. Nuriev
O. N. Zaitseva
Source :
Учёные записки Казанского университета: Серия Физико-математические науки, Vol 166, Iss 3, Pp 277-296 (2024)
Publication Year :
2024
Publisher :
Kazan Federal University, 2024.

Abstract

The propulsive motion of a multimass system, vibration-driven robot (VR), in a viscous incompressible fluid was studied. The VR consisted of a round cylindrical body submerged in the fluid and an internal mass (IM) performing small-amplitude pendulum-like oscillations inside the body. Using the method of asymptotic expansions, the combined mechanical and hydrodynamic problems that describe the self-propulsion of the system in the fluid were solved. The hydrodynamic problem was formulated on the basis of the complete non-stationary Navier– Stokes equation. An analytical solution was derived to describe the cruising regime of the VR motion in the fluid. The non-stationary hydrodynamic influence on the VR was determined. The efficiency of the propulsive system’s motion was assessed.

Details

Language :
English, Russian
ISSN :
25417746 and 25002198
Volume :
166
Issue :
3
Database :
Directory of Open Access Journals
Journal :
Учёные записки Казанского университета: Серия Физико-математические науки
Publication Type :
Academic Journal
Accession number :
edsdoj.651d5549a22e4dcc9db25ab86fa9e788
Document Type :
article
Full Text :
https://doi.org/10.26907/2541-7746.2024.3.277-296