Vortex sound with special reference to vortex rings: theory, computer simulations, and experiments

被引:4
作者
Kambe, Tsutomu
机构
关键词
HEAD-ON COLLISION; OBLIQUE COLLISION; AERODYNAMIC SOUND; RADIATION; GENERATION; EMISSION; AEROACOUSTICS; SCATTERING; NOISE; DECAY;
D O I
10.1260/1475-472X.9.1-2.51
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
This is a review paper on vortex sound with special reference to vortex rings and sound emission detected in experimental tests. Any unsteady vortex motion excites acoustic waves. From the fundamental conservation equations of mass, momentum and energy of fluid flows, one can derive a wave equation of aerodynamic sound. The wave equation of acoustic pressure can be reduced to a compact form, called the equation of vortex sound. This equation predicts sound generation by unsteady vortex motions. On the other hand, based on the matched asymptotic expansion (using the multipole expansions), one can derive a formula of wave pressure excited by time-dependent vorticity field localized in space. The theoretical predictions are compared with experimental observations and direct computer simulations. The systems considered are, head-on collision or oblique collision of two vortex rings, vortex-cylinder interaction, vortex-edge interaction, and others. Scaling laws of the pressure of emitted sound are predicted by the theory and compared with experimental observations. Comparison between theories and observations shows excellence of the theoretical predictions. Direct numerical simulations are reviewed briefly for sound generation by collisions of two vortex rings and that by a cylinder immersed in a uniform stream (aeolian tones). Vortex sound in superfluid is also reviewed about experimental observations and computational studies on the basis of the Gross-Pitaevski equation.
引用
收藏
页码:51 / 89
页数:39
相关论文
共 60 条
[31]  
Kambe T., 2007, Elementary fluid mechanics, DOI [10.1142/5895, DOI 10.1142/5895]
[32]  
Kop'ev V. F., 2000, Physics-Uspekhi, V43, P663, DOI 10.1070/PU2000v043n07ABEH000769
[33]   Vortex ring eigen-oscillations as a source of sound [J].
Kopiev, VF ;
Chernyshev, SA .
JOURNAL OF FLUID MECHANICS, 1997, 341 :19-57
[35]   Sound emission due to superfluid vortex reconnections [J].
Leadbeater, M ;
Winiecki, T ;
Samuels, DC ;
Barenghi, CF ;
Adams, CS .
PHYSICAL REVIEW LETTERS, 2001, 86 (08) :1410-1413
[36]   COMPACT FINITE-DIFFERENCE SCHEMES WITH SPECTRAL-LIKE RESOLUTION [J].
LELE, SK .
JOURNAL OF COMPUTATIONAL PHYSICS, 1992, 103 (01) :16-42
[37]  
LELE SK, 1997, 970018 AIAA
[38]  
LESSER MB, 1971, PHYS ACOUSTICS, V11, P69
[39]   ON SOUND GENERATED AERODYNAMICALLY .1. GENERAL THEORY [J].
LIGHTHILL, MJ .
PROCEEDINGS OF THE ROYAL SOCIETY OF LONDON SERIES A-MATHEMATICAL AND PHYSICAL SCIENCES, 1952, 211 (1107) :564-587
[40]   Hydrodynamic approach to vortex lifetimes in trapped Bose condensates [J].
Lundh, E ;
Ao, P .
PHYSICAL REVIEW A, 2000, 61 (06) :7