Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Wang, Nianqing
and
Smereka, Peter
2003.
Effective Equations for Sound and Void Wave Propagation in Bubbly Fluids.
SIAM Journal on Applied Mathematics,
Vol. 63,
Issue. 6,
p.
1849.
Goldstein, R.J.
Eckert, E.R.G.
Ibele, W.E.
Patankar, S.V.
Simon, T.W.
Kuehn, T.H.
Strykowski, P.J.
Tamma, K.K.
Bar-Cohen, A.
Heberlein, J.V.R.
Davidson, J.H.
Bischof, J.
Kulacki, F.A.
Kortshagen, U.
Garrick, S.
and
Srinivasan, V.
2005.
Heat transfer—a review of 2002 literature.
International Journal of Heat and Mass Transfer,
Vol. 48,
Issue. 5,
p.
819.
Gavrilyuk, S.L.
2005.
Acoustic properties of a two-fluid compressible mixture with micro-inertia.
European Journal of Mechanics - B/Fluids,
Vol. 24,
Issue. 3,
p.
397.
Chikhi, Nourdine
and
Gavrilyuk, Sergey L.
2007.
Statistical description of a cloud of compressible bubbles.
Continuum Mechanics and Thermodynamics,
Vol. 18,
Issue. 7-8,
p.
469.
Ando, Keita
Colonius, Tim
and
Brennen, Christopher E.
2009.
Improvement of acoustic theory of ultrasonic waves in dilute bubbly liquids.
The Journal of the Acoustical Society of America,
Vol. 126,
Issue. 3,
p.
EL69.
KANAGAWA, Tetsuya
YANO, Takeru
WATANABE, Masao
and
FUJIKAWA, Shigeo
2010.
Unified Theory Based on Parameter Scaling for Derivation of Nonlinear Wave Equations in Bubbly Liquids.
Journal of Fluid Science and Technology,
Vol. 5,
Issue. 3,
p.
351.
ANDO, KEITA
SANADA, T.
INABA, K.
DAMAZO, J. S.
SHEPHERD, J. E.
COLONIUS, T.
and
BRENNEN, C. E.
2011.
Shock propagation through a bubbly liquid in a deformable tube.
Journal of Fluid Mechanics,
Vol. 671,
Issue. ,
p.
339.
ZERAVCIC, ZORANA
LOHSE, DETLEF
and
VAN SAARLOOS, WIM
2011.
Collective oscillations in bubble clouds.
Journal of Fluid Mechanics,
Vol. 680,
Issue. ,
p.
114.
Amenzadeh, Rafael Yusif
Sayyad, Akperli Reyhan
and
Naghiyev, Faig Bakhman Ogli
2012.
Wavy Motion of Viscous Bubbly Liquid in Tubes of Orthotropic Material.
International Journal of Chemoinformatics and Chemical Engineering,
Vol. 2,
Issue. 1,
p.
39.
Sinden, D
Stride, E
and
Saffari, N
2012.
Approximations for acoustically excited bubble cluster dynamics.
Journal of Physics: Conference Series,
Vol. 353,
Issue. ,
p.
012008.
Guo, Xiasheng
Lin, Zhou
Tu, Juan
Liang, Bin
Cheng, Jianchun
and
Zhang, Dong
2013.
Modeling and optimization of an acoustic diode based on micro-bubble nonlinearity.
The Journal of the Acoustical Society of America,
Vol. 133,
Issue. 2,
p.
1119.
Ando, Keita
Colonius, Tim
and
Brennen, Christopher E.
2013.
Bubble Dynamics and Shock Waves.
p.
141.
Yano, T.
Kanagawa, T.
Watanabe, M.
and
Fujikawa, S.
2013.
Bubble Dynamics and Shock Waves.
p.
107.
Amenzadeh, Rafael Yusif
Sayyad, Akperli Reyhan
and
Naghiyev, Faig Bakhman Ogli
2013.
Methodologies and Applications for Chemoinformatics and Chemical Engineering.
p.
218.
Tiwari, A.
Pantano, C.
and
Freund, J. B.
2015.
Growth-and-collapse dynamics of small bubble clusters near a wall.
Journal of Fluid Mechanics,
Vol. 775,
Issue. ,
p.
1.
Barré, J.
Métivier, D.
and
Yamaguchi, Y. Y.
2016.
Trapping scaling for bifurcations in the Vlasov systems.
Physical Review E,
Vol. 93,
Issue. 4,
Santos, D. D. A.
and
Elskens, Yves
2017.
Phase mixing importance for both Landau instability and damping.
Journal of Plasma Physics,
Vol. 83,
Issue. 1,
Maeda, Kazuki
and
Colonius, Tim
2018.
Eulerian–Lagrangian method for simulation of cloud cavitation.
Journal of Computational Physics,
Vol. 371,
Issue. ,
p.
994.
Bryngelson, Spencer H.
Charalampopoulos, Alexis
Sapsis, Themistoklis P.
and
Colonius, Tim
2020.
A Gaussian moment method and its augmentation via LSTM recurrent neural networks for the statistics of cavitating bubble populations.
International Journal of Multiphase Flow,
Vol. 127,
Issue. ,
p.
103262.
Barré, J.
Métivier, D.
and
Yamaguchi, Y. Y.
2020.
Towards a classification of bifurcations in Vlasov equations.
Physical Review E,
Vol. 102,
Issue. 5,