Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Yokoi, Nobumitsu
and
Yoshizawa, Akira
1993.
Statistical analysis of the effects of helicity in inhomogeneous turbulence.
Physics of Fluids A: Fluid Dynamics,
Vol. 5,
Issue. 2,
p.
464.
Parchen, René
Steenbergen, Wiendelt
and
Voskamp, Jan
1993.
Engineering Turbulence Modelling and Experiments.
p.
207.
SAMPERS, W.F.J.
LAMERS, A.P.G.G.
and
van STEENHOVEN, A.A.
1993.
ANALYSIS OF EXPERIMENTAL AND NUMERICAL RESULTS OF A TURBULENT SWIRLING FLOW IN A TUBE.
Chemical Engineering Communications,
Vol. 125,
Issue. 1,
p.
187.
Solnordal, C. B.
and
Gray, N. B.
1994.
An experimental study of fluid flow and heat transfer in decaying swirl through a heated annulus.
Experiments in Fluids,
Vol. 18-18,
Issue. 1-2,
p.
17.
Reader-Harris, M.J.
1994.
The decay of swirl in a pipe.
International Journal of Heat and Fluid Flow,
Vol. 15,
Issue. 3,
p.
212.
Chang, F.
and
Dhir, V.K.
1994.
Turbulent flow field in tangentially injected swirl flows in tubes.
International Journal of Heat and Fluid Flow,
Vol. 15,
Issue. 5,
p.
346.
Yu, S.C.M.
and
Kitoh, O.
1994.
A general formulation for the decay of swirling motion along a straight pipe.
International Communications in Heat and Mass Transfer,
Vol. 21,
Issue. 5,
p.
719.
Aouabed, H.
Legentilhomme, P.
and
Legrand, J.
1995.
Wall visualization of swirling decaying flow using a dot-paint method.
Experiments in Fluids,
Vol. 19,
Issue. 1,
p.
43.
Mickan, B.
Wendt, G.
Kramer, R.
and
Dopheide, D.
1996.
Systematic investigation of pipe flows and installation effects using laser Doppler anemometry—Part II. The effect of disturbed flow profiles on turbine gas meters—a describing empirical model.
Flow Measurement and Instrumentation,
Vol. 7,
Issue. 3-4,
p.
151.
Solnordal, C. B.
and
Gray, N. B.
1996.
Heat-transfer and pressure-drop considerations in the design of Sirosmelt lances.
Metallurgical and Materials Transactions B,
Vol. 27,
Issue. 2,
p.
221.
Imao, Shigeki
Itoh, Motoyuki
and
Harada, Takeyoshi
1996.
Turbulent characteristics of the flow in an axially rotating pipe.
International Journal of Heat and Fluid Flow,
Vol. 17,
Issue. 5,
p.
444.
Holäpfel, Frank
Lene, Bernhard
and
Leuckel, Wolfgang
1996.
Swirl-induced intermittency: A novel effect modifying the turbulence structure of swirling free jets.
Symposium (International) on Combustion,
Vol. 26,
Issue. 1,
p.
187.
Bali, Tülin
1998.
Modelling of heat transfer and fluid flow for decaying swirl flow in a circular pipe.
International Communications in Heat and Mass Transfer,
Vol. 25,
Issue. 3,
p.
349.
Hoekstra, A. J.
Van Vliet, E.
Derksen, J. J.
and
Van Den Akker, H. E. A.
1998.
Advances in Turbulence VII.
Vol. 46,
Issue. ,
p.
289.
Steenbergen, W.
and
Voskamp, J.
1998.
The rate of decay of swirl in turbulent pipe flow.
Flow Measurement and Instrumentation,
Vol. 9,
Issue. 2,
p.
67.
Yoshizawa, Akira
1998.
Hydrodynamic and Magnetohydrodynamic Turbulent Flows.
Vol. 48,
Issue. ,
p.
173.
Yuan, S P
and
So, R M C
1998.
Turbulent rotating flow calculations: An assessment of two-equation anisotropic and Reynolds stress models.
Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering,
Vol. 212,
Issue. 3,
p.
193.
Parchen, R. R.
and
Steenbergen, W.
1998.
An Experimental and Numerical Study of Turbulent Swirling Pipe Flows.
Journal of Fluids Engineering,
Vol. 120,
Issue. 1,
p.
54.
Yoshizawa, Akira
1998.
Hydrodynamic and Magnetohydrodynamic Turbulent Flows.
Vol. 48,
Issue. ,
p.
83.
Mantilla, I.
Shirazi, S. A.
and
Shoham, O.
1999.
Flow Field Prediction and Bubble Trajectory Model in Gas-Liquid Cylindrical Cyclone (GLCC) Separators.
Journal of Energy Resources Technology,
Vol. 121,
Issue. 1,
p.
9.