Acoustic Black Holes – Modelling, Shaping, Placement and Application

Author:

Hoffmann Steffen,Rothe Sebastian,Langer Sabine Christine

Publisher

Springer Nature Switzerland

Reference17 articles.

1. Mironov, M.A.: Propagation of a flexural wave in a plate whose thickness decreases smoothly to zero in a finite interval. Soviet Phys. Acoust. USSR 34(3), 318–319 (1988)

2. Krylov, V.V., Shuvalov, A.L.: Propagation of localised flexural vibrations along plate edges described by a power law. Proc. Inst. Acoust. 22, 263–270 (2000)

3. Krylov, V.V., Tilman, F.J.B.S.: Acoustic ‘black holes’ for flexural waves as effective vibration dampers. J. Sound Vib. 274(3–5), 605–619 (2004)

4. Conlon, S.C., Fahnline, J.B., Semperlotti, F.: Numerical analysis of the vibroacoustic properties of plates with embedded grids of acoustic black holes. J. Acoust. Soc. Am. 137(1), 447–457 (2015)

5. Ouahabi, A.A.E., Krylov, V.V., O’Boy, D.: Investigation of the acoustic black hole termination for sound waves propagating in cylindrical waveguides. In: Proceedings of ICSV22, Florence (2015)

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