Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Roberts, P. M.
2005.
Laboratory observations of altered porous fluid flow behavior in Berea sandstone induced by low-frequency dynamic stress stimulation.
Acoustical Physics,
Vol. 51,
Issue. S1,
p.
S140.
Beresnev, Igor A.
Vigil, R. Dennis
Li, Wenqing
Pennington, Wayne D.
Turpening, Roger M.
Iassonov, Pavel P.
and
Ewing, Robert P.
2005.
Elastic waves push organic fluids from reservoir rock.
Geophysical Research Letters,
Vol. 32,
Issue. 13,
Huh, C.
2006.
Improved Oil Recovery by Seismic Vibration: A Preliminary Assessment of Possible Mechanisms.
Liang, Shibin
2006.
Oscillating Characteristics of Slug Flow in Oscillating Heat Pipes.
Vananroye, Anja
Van Puyvelde, Peter
and
Moldenaers, Paula
2006.
Morphology Development During Microconfined Flow of Viscous Emulsions.
Applied Rheology,
Vol. 16,
Issue. 5,
p.
242.
Hamida, T.
2006.
The Influence of Ultrasonic Energy on Capillary Fluid Displacement.
Hilpert, Markus
2007.
Capillarity-induced resonance of blobs in porous media: Analytical solutions, Lattice–Boltzmann modeling, and blob mobilization.
Journal of Colloid and Interface Science,
Vol. 309,
Issue. 2,
p.
493.
Frehner, Marcel
Schmalholz, Stefan M.
and
Podladchikov, Yuri
2007.
Interaction of seismic background noise with oscillating pore fluids causes spectral modifications of passive seismic measurements at low frequencies.
p.
1307.
Frehner*, Marcel
Schmalholz, Stefan M.
and
Podladchikov, Yuri
2007.
Low frequency spectral modifications of seismic background noise due to interaction with oscillating fluids entrapped in porous rocks.
p.
1150.
Hamida, Tarek
and
Babadagli, Tayfun
2007.
Immiscible displacement of oil by water in consolidated porous media due to capillary imbibition under ultrasonic waves.
The Journal of the Acoustical Society of America,
Vol. 122,
Issue. 3,
p.
1539.
Hamida, Tarek
and
Babadagli, Tayfun
2007.
Analysis of capillary interaction and oil recovery under ultrasonic waves.
Transport in Porous Media,
Vol. 70,
Issue. 2,
p.
231.
Hamida, Tarek
and
Babadagli, Tayfun
2008.
Effects of ultrasonic waves on the interfacial forces between oil and water.
Ultrasonics Sonochemistry,
Vol. 15,
Issue. 4,
p.
274.
Zinchenko, Alexander Z.
and
Davis, Robert H.
2008.
Algorithm for direct numerical simulation of emulsion flow through a granular material.
Journal of Computational Physics,
Vol. 227,
Issue. 16,
p.
7841.
Zinchenko, Alexander Z.
and
Davis, Robert H.
2008.
Squeezing of a periodic emulsion through a cubic lattice of spheres.
Physics of Fluids,
Vol. 20,
Issue. 4,
Davis, Robert H.
and
Zinchenko, Alexander Z.
2009.
Motion of deformable drops through granular media and other confined geometries.
Journal of Colloid and Interface Science,
Vol. 334,
Issue. 2,
p.
113.
Frehner, Marcel
Schmalholz, Stefan M.
and
Podladchikov, Yuri
2009.
Spectral modification of seismic waves propagating through solids exhibiting a resonance frequency: a 1-D coupled wave propagation-oscillation model.
Geophysical Journal International,
Vol. 176,
Issue. 2,
p.
589.
Guido, Stefano
and
Preziosi, Valentina
2010.
Droplet deformation under confined Poiseuille flow.
Advances in Colloid and Interface Science,
Vol. 161,
Issue. 1-2,
p.
89.
Baik, Seung Jae
Moldenaers, Paula
and
Clasen, Christian
2011.
A sliding plate microgap rheometer for the simultaneous measurement of shear stress and first normal stress difference.
Review of Scientific Instruments,
Vol. 82,
Issue. 3,
NADERI, KHOSROW
and
BABADAGLI, TAYFUN
2011.
Pore-scale investigation of immiscible displacement process in porous media under high-frequency sound waves.
Journal of Fluid Mechanics,
Vol. 680,
Issue. ,
p.
336.
YAMABE, Hirotatsu
and
MATSUOKA, Toshifumi
2012.
Lattice Boltzmann Simulation of Seismic Stimulation for Mobilization of a Water-oil Two-phase Flow.
Journal of Geography (Chigaku Zasshi),
Vol. 121,
Issue. 1,
p.
53.