Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Crespo , A.
Garcı´a , J.
and
Jime´nez-Ferna´ndez, J.
2001.
Stability Criteria of the Steady Flow of a Liquid Containing Bubbles Along a Nozzle .
Journal of Fluids Engineering,
Vol. 123,
Issue. 4,
p.
836.
XING, T.
and
FRANKEL, S.H.
2001.
Effect of Cavitation on Vortex Dynamics in a Submerged Jet.
Delale, Can F.
2002.
Thermal Damping in Cavitating Nozzle Flows.
Journal of Fluids Engineering,
Vol. 124,
Issue. 4,
p.
969.
Xing, T.
and
Frankel, S. H.
2002.
Effect of Cavitation on Vortex Dynamics in a Submerged Laminar Jet.
AIAA Journal,
Vol. 40,
Issue. 11,
p.
2266.
Delale, Can F.
Okita, Kohei
and
Matsumoto, Yoichiro
2005.
Steady-State Cavitating Nozzle Flows With Nucleation.
Journal of Fluids Engineering,
Vol. 127,
Issue. 4,
p.
770.
Xing, Tao
Li, Zhenyin
and
Frankel, Steven H.
2005.
Numerical Simulation of Vortex Cavitation in a Three-Dimensional Submerged Transitional Jet.
Journal of Fluids Engineering,
Vol. 127,
Issue. 4,
p.
714.
Schmidt, S
Sezal, I
Schnerr, G
and
Talhamer, Matthias
2008.
Riemann Techniques for the Simulation of Compressible Liquid Flows with Phase-Transistion at all Mach Numbers - Shock and Wave Dynamics in Cavitating 3-D Micro and Macro Systems.
ITO, Yutaka
2008.
Numerical Model and Validation for Cryogenic High-Speed Cavitating Flow Based on Bubble Size Distribution Model in Consideration of Rigorous Heat Transfer around Bubble and Bubble Oscillation.
JOURNAL OF THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES,
Vol. 56,
Issue. 657,
p.
456.
Delale, Can F.
and
Tryggvason, Gretar
2008.
Shock structure in bubbly liquids: comparison of direct numerical simulations and model equations.
Shock Waves,
Vol. 17,
Issue. 6,
p.
433.
Sezal, I. H.
Schmidt, S. J.
Schnerr, G. H.
Thalhamer, M.
and
Förster, M.
2009.
Shock and wave dynamics in cavitating compressible liquid flows in injection nozzles.
Shock Waves,
Vol. 19,
Issue. 1,
p.
49.
Dunn, Patrick F.
Thomas, Flint O.
Davis, Michael P.
and
Dorofeeva, Irina E.
2010.
Experimental characterization of aviation-fuel cavitation.
Physics of Fluids,
Vol. 22,
Issue. 11,
Seo, Jung Hee
Lele, Sanjiva K.
and
Tryggvason, Gretar
2010.
Investigation and modeling of bubble-bubble interaction effect in homogeneous bubbly flows.
Physics of Fluids,
Vol. 22,
Issue. 6,
Grandjean, H.
Jacques, N.
and
Zaleski, S.
2012.
Shock propagation in liquids containing bubbly clusters: a continuum approach.
Journal of Fluid Mechanics,
Vol. 701,
Issue. ,
p.
304.
TSUDA, Shinichi
2012.
A Construction of a Multi-Process Cavitation Model for Cold Water (Implementation of Inception/Collapse and Coalescence/Break-up).
TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series B,
Vol. 78,
Issue. 790,
p.
1165.
Rodio, M.G.
De Giorgi, M.G.
and
Ficarella, A.
2012.
Influence of convective heat transfer modeling on the estimation of thermal effects in cryogenic cavitating flows.
International Journal of Heat and Mass Transfer,
Vol. 55,
Issue. 23-24,
p.
6538.
Cross, Andrew T.
Sadeghi, Farshid
Cao, Lijun
Rateick, Richard G.
and
Rowan, Scott
2012.
Flow Visualization in a Pocketed Thrust Washer.
Tribology Transactions,
Vol. 55,
Issue. 5,
p.
571.
Delale, Can F.
Pasinlioğlu, Şenay
and
Başkaya, Zafer
2012.
Supercavitation.
p.
1.
Delale, Can F.
Schnerr, Günter H.
and
Pasinlioğlu, Şenay
2013.
Bubble Dynamics and Shock Waves.
p.
205.
Ando, Keita
Colonius, Tim
and
Brennen, Christopher E.
2013.
Bubble Dynamics and Shock Waves.
p.
141.
Capocelli, Mauro
Musmarra, Dino
Prisciandaro, Marina
and
Lancia, Amedeo
2014.
Chemical effect of hydrodynamic cavitation: Simulation and experimental comparison.
AIChE Journal,
Vol. 60,
Issue. 7,
p.
2566.