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@article{ND_2018_14_3_a5, author = {S. S. Kevorkov and R. K. Khamidullin and I. P. Koroleva and V. V. Smirnov and E. B. Gusarova and L. I. Manevich}, title = {Efficiency of a {Three-Particle} {Energy} {Sink:} {Experimental} {Study} and {Numerical} {Simulation}}, journal = {Russian journal of nonlinear dynamics}, pages = {355--366}, publisher = {mathdoc}, volume = {14}, number = {3}, year = {2018}, language = {en}, url = {http://geodesic.mathdoc.fr/item/ND_2018_14_3_a5/} }
TY - JOUR AU - S. S. Kevorkov AU - R. K. Khamidullin AU - I. P. Koroleva AU - V. V. Smirnov AU - E. B. Gusarova AU - L. I. Manevich TI - Efficiency of a Three-Particle Energy Sink: Experimental Study and Numerical Simulation JO - Russian journal of nonlinear dynamics PY - 2018 SP - 355 EP - 366 VL - 14 IS - 3 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/ND_2018_14_3_a5/ LA - en ID - ND_2018_14_3_a5 ER -
%0 Journal Article %A S. S. Kevorkov %A R. K. Khamidullin %A I. P. Koroleva %A V. V. Smirnov %A E. B. Gusarova %A L. I. Manevich %T Efficiency of a Three-Particle Energy Sink: Experimental Study and Numerical Simulation %J Russian journal of nonlinear dynamics %D 2018 %P 355-366 %V 14 %N 3 %I mathdoc %U http://geodesic.mathdoc.fr/item/ND_2018_14_3_a5/ %G en %F ND_2018_14_3_a5
S. S. Kevorkov; R. K. Khamidullin; I. P. Koroleva; V. V. Smirnov; E. B. Gusarova; L. I. Manevich. Efficiency of a Three-Particle Energy Sink: Experimental Study and Numerical Simulation. Russian journal of nonlinear dynamics, Tome 14 (2018) no. 3, pp. 355-366. http://geodesic.mathdoc.fr/item/ND_2018_14_3_a5/
[1] Den Hartog, J. P., Mechanical Vibrations, 4th ed., McGraw-Hill Book Company, New York, 1956, 436 pp.
[2] Gendelman, O. V., “Transition of Energy to a Nonlinear Localized Mode in a Highly Asymmetric System of Two Oscillators”, Nonlinear Dyn., 25:1–3 (2001), 237–253 | DOI | Zbl
[3] Manevitch, L. I., Gourdon, E., and Lamarque, C.-H., “Towards the Design of an Optimal Energetic Sink in a Strongly Inhomogeneous Two-Degree-of-Freedom System”, J. Appl. Mech., 74:6 (2007), 1078–1086 | DOI | MR
[4] Gendelman, O. V., Manevitch, L. I., Vakakis, A. F., and M'Closkey, R., “Energy Pumping in Nonlinear Mechanical Oscillators: Part 1. Dynamics of the Underlying Hamiltonian Systems”, J. Appl. Mech., 68:1 (2001), 34–41 | DOI | MR | Zbl
[5] Vakakis, A. F., Gendelman, O. V., Bergman, L. A., McFarland, D. M., Kerschen, G., and Lee, Y. S., Nonlinear Targeted Energy Transfer in Mechanical and Structural Systems, Springer, Dordrecht, 2009
[6] Manevitch, L. I., Kovaleva, A., Smirnov, V., and Starosvetsky, Yu., “Quasi-One-Dimensional Nonlinear Lattices”, Nonstationary Resonant Dynamics of Oscillatory Chains and Nanostructures, Springer, Singapore, 2018, 85–140 | DOI | MR
[7] Gourdon, E., Lamarque, C.-H., and Pernot, S., “Contribution to Efficiency of Irreversible Passive Energy Pumping with a Strong Nonlinear Attachment”, Nonlinear Dyn., 50:4 (2007), 793–808 | DOI | MR | Zbl
[8] Jiang, X., McFarland, D. M., Bergman, L. A., and Vakakis, A. F., “Steady State Passive Nonlinear Energy Pumping in Coupled Oscillators: Theoretical and Experimental Results”, Nonlinear Dyn., 33:1 (2003), 87–102 | DOI | MR | Zbl
[9] Koroleva (Kikot), I. P. and Manevitch, L. I., “Oscillatory Chain with Grounding Support in Conditions of Acoustic Vacuum”, Nelin. Dinam., 11:3 (2015), 487–502 (Russian) | DOI | Zbl
[10] Manevitch, L. I. and Koroleva, I. P., “Limiting Phase Trajectories As an Alternative to Nonlinear Normal Modes”, Proc. IUTAM, 19 (2016), 144–151 | DOI
[11] Smirnov, V. V. and Manevitch, L. I., “Forced Oscillations of the String under Conditions of Sonic Vacuum”, Philos. Trans. Royal Soc. A, 2018 (to appear) | MR
[12] Manevitch, L. I. and Vakakis, A. F., “Nonlinear Oscillatory Acoustic Vacuum”, SIAM J. Appl. Math., 74:6 (2014), 1742–1762 | DOI | MR | Zbl
[13] Koroleva (Kikot), I. P., Manevitch, L. I., and Vakakis, A. F., “Non-Stationary Resonance Dynamics of a Nonlinear Sonic Vacuum with Grounding Supports”, J. Sound Vibration, 357 (2015), 349–364 | DOI | MR