Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Ma, Fuhua
Choi, Jeong-Yeol
and
Yang, Vigor
2004.
Thrust Chamber Dynamics and Propulsive Performance of Single-Tube Pulse Detonation Engines.
Persico, G
Gaetani, P
and
Guardone, A
2005.
Dynamic calibration of fast-response probes in low-pressure shock tubes.
Measurement Science and Technology,
Vol. 16,
Issue. 9,
p.
1751.
Ma, Fuhua
Choi, Jeong-Yeol
and
Yang, Vigor
2005.
Thrust Chamber Dynamics and Propulsive Performance of Single-Tube Pulse Detonation Engines.
Journal of Propulsion and Power,
Vol. 21,
Issue. 3,
p.
512.
Liang, Shen-Min
Chung, Wen-Tai
Chen, Hua
and
Shyu, Shiuh-Hwa
2005.
Numerical Investigation of Reflected Shock/Vortex Interaction near an Open-Ended Duct.
AIAA Journal,
Vol. 43,
Issue. 2,
p.
349.
Tseng, T.-I
and
Yang, R.-J.
2006.
Numerical Simulation of Vorticity Production in Shock Diffraction.
AIAA Journal,
Vol. 44,
Issue. 5,
p.
1040.
Liang, Shen-Min
and
Liao, Chi-Yao
2007.
Blast-Wave Dynamics in a Circular Duct with a Sudden Expansion.
AIAA Journal,
Vol. 45,
Issue. 9,
p.
2164.
Haselbacher, A.
Balachandar, S.
and
Kieffer, S. W.
2007.
Open-Ended Shock Tube Flows: Influence of Pressure Ratio and Diaphragm Position.
AIAA Journal,
Vol. 45,
Issue. 8,
p.
1917.
Guardone, A.
and
Vigevano, L.
2007.
Finite element/volume solution to axisymmetric conservation laws.
Journal of Computational Physics,
Vol. 224,
Issue. 2,
p.
489.
Ekici, O.
Ezekoye, O. A.
Hall, M. J.
and
Matthews, R. D.
2007.
Thermal and Flow Fields Modeling of Fast Spark Discharges in Air.
Journal of Fluids Engineering,
Vol. 129,
Issue. 1,
p.
55.
GUARDONE, ALBERTO
2007.
Three-dimensional shock tube flows for dense gases.
Journal of Fluid Mechanics,
Vol. 583,
Issue. ,
p.
423.
GAETANI, PAOLO
GUARDONE, ALBERTO
and
PERSICO, GIACOMO
2008.
Shock tube flows past partially opened diaphragms.
Journal of Fluid Mechanics,
Vol. 602,
Issue. ,
p.
267.
Zare-Behtash, H.
Kontis, K.
and
Gongora-Orozco, N.
2008.
Experimental investigations of compressible vortex loops.
Physics of Fluids,
Vol. 20,
Issue. 12,
Zare-Behtash, H.
and
Kontis, K.
2009.
Compressible Flow Structures Interaction with a Two-Dimensional Ejector: A Cold-Flow Study.
Journal of Propulsion and Power,
Vol. 25,
Issue. 3,
p.
707.
Gongora-Orozco, Nalleli
Zare-Behtash, Hossein
and
Kontis, Konstantino
2010.
Particle Image Velocimetry Studies on Shock Wave Diffraction with Freestream Flow.
Mariani, R.
and
Kontis, K.
2010.
Experimental studies on coaxial vortex loops.
Physics of Fluids,
Vol. 22,
Issue. 12,
Zare-Behtash, H.
Kontis, K.
Gongora-Orozco, N.
and
Takayama, K.
2010.
Shock wave-induced vortex loops emanating from nozzles with singular corners.
Experiments in Fluids,
Vol. 49,
Issue. 5,
p.
1005.
Yang, Jaw-Yen
and
Muljadi, Bagus Putra
2011.
Simulation of Shock Wave Diffraction over 90° Sharp Corner in Gases of Arbitrary Statistics.
Journal of Statistical Physics,
Vol. 145,
Issue. 6,
p.
1674.
Federrath, C.
Chabrier, G.
Schober, J.
Banerjee, R.
Klessen, R. S.
and
Schleicher, D. R. G.
2011.
Mach Number Dependence of Turbulent Magnetic Field Amplification: Solenoidal versus Compressive Flows.
Physical Review Letters,
Vol. 107,
Issue. 11,
Dora, C. Lakshmana
Saravanan, D.
Karunakar, K.
and
Das, Debopam
2011.
Characteristics of Embedded-Shock-Free Compressible Vortex Rings: A Detailed Study Using PIV.
Advances in Mechanical Engineering,
Vol. 3,
Issue. ,
p.
650871.
Skews, Beric
Law, Craig
Muritala, Adam
and
Bode, Sebastian
2012.
Shear layer behavior resulting from shock wave diffraction.
Experiments in Fluids,
Vol. 52,
Issue. 2,
p.
417.