
Bibliography
1 H. Bruus, J. Dual, J. Hawkes, M. Hill, T. Laurell, J. Nilsson, S. Radel, S. Sadhal,
and M. Wiklund. Forthcoming lab on a chip tutorial series on acoustouidics:
Acoustouidics-exploiting ultrasonic standing wave forces and acoustic streaming in
microuidic systems for cell and particle manipulation. Lab Chip 11, 35793580
(2011).
2 N. Riley. Steady streaming. Annu Rev Fluid Mech 33, 4365 (2001).
3 L. Rayleigh. On the circulation of air observed in Kundt's tubes, and on some allied
acoustical problems. Philos Trans R Soc London 175, 121 (1884).
4 A. Kundt. Ueber eine neue art akustischer staubguren und über die anwendung
derselben zur bestimmung der schallgeschwindigkeit in festen körpern und gasen. Ann
Phys Chem 127, 497523 (1866).
5 H. Schlichting. Berechnung ebener periodischer grenzeschichtströmungen. Phys Z 33,
327335 (1932).
6 W. L. Nyborg. Acoustic streaming near a boundary. J Acoust Soc Am 30, 329339
(1958).
7 C. Lee and T. Wang. Near-boundary streaming around a small sphere due to 2 orthogonal
standing waves. J Acoust Soc Am 85, 10811088 (1989).
8 A. Y. Rednikov and S. S. Sadhal. Acoustic/steady streaming from a motionless boundary
and related phenomena: generalized treatment of the inner streaming and examples.
J Fluid Mech 667, 426462 (2011).
9 M. Hamilton, Y. Ilinskii, and E. Zabolotskaya. Thermal eects on acoustic streaming
in standing waves. J Acoust Soc Am 114, 30923101 (2003).
10 M. Hamilton, Y. Ilinskii, and E. Zabolotskaya. Acoustic streaming generated by standing
waves in two-dimensional channels of arbitrary width. J Acoust Soc Am 113,
153160 (2003).
11 P. B. Muller, M. Rossi, A. G. Marin, R. Barnkob, P. Augustsson, T. Laurell, C. J.
Kähler, and H. Bruus. Ultrasound-induced acoustophoretic motion of microparticles
in three dimensions. Phys Rev E 88, 023006 (2013).
129