Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Watkins, C. B.
and
Aung, W.
1978.
Finite-Difference Solution of Forced Convection from a Hot-Film Probe in a Reversing Flow.
Numerical Heat Transfer, Part B: Fundamentals,
Vol. 1,
Issue. 4,
p.
543.
Watkins, C. B.
and
Aung, W.
1978.
FINITE-DIFFERENCE SOLUTION OF FORCED CONVECTION FROM A HOT-FILM PROBE IN A REVERSING FLOW.
Numerical Heat Transfer,
Vol. 1,
Issue. 4,
p.
543.
Brison, J.F.
Charnay, G.
and
Comte-Bellot, G.
1979.
Calcul des transferts thermiques entre film chaud et substrat par un modele a deux dimensions: Prevision de la reponse dynamique de sondes usuelles.
International Journal of Heat and Mass Transfer,
Vol. 22,
Issue. 1,
p.
111.
Miller, G E
1980.
Position sensitivity of hot-film shear probes.
Journal of Physics E: Scientific Instruments,
Vol. 13,
Issue. 9,
p.
973.
Gupta, S.K.
Patel, T.R.D.
and
Ackerberg, R.C.
1982.
Wall heat/mass transfer in pulsatile flow.
Chemical Engineering Science,
Vol. 37,
Issue. 12,
p.
1727.
Kaiping, Peter
1983.
Unsteady forced convective heat transfer from a hot film in non-reversing and reversing shear flow.
International Journal of Heat and Mass Transfer,
Vol. 26,
Issue. 4,
p.
545.
Hanratty, T. J.
1991.
Use of the polarographic method to measure wall shear stress.
Journal of Applied Electrochemistry,
Vol. 21,
Issue. 12,
p.
1038.
Zhuoxiong, Mao
and
Hanratty, Thomas J.
1991.
Analysis of wall shear stress probes in large amplitude unsteady flows.
International Journal of Heat and Mass Transfer,
Vol. 34,
Issue. 1,
p.
281.
Mao, Z.
and
Hanratty, T. J.
1992.
Measurement of wall shear rate in large amplitude unsteady reversing flows.
Experiments in Fluids,
Vol. 12-12,
Issue. 4-5,
p.
342.
Mao, Zhuoxiong
and
Hanratty, Thomas J.
1994.
Influence of large‐amplitude oscillations on turbulent drag.
AIChE Journal,
Vol. 40,
Issue. 10,
p.
1601.
Gomaa, H.
and
Al Taweel, A.M.
2004.
Dynamic analysis of mass transfer at vertically oscillating surfaces.
Chemical Engineering Journal,
Vol. 102,
Issue. 1,
p.
71.
Gomaa, H.
and
Al Taweel, A.M.
2005.
Effect of oscillatory motion on heat transfer at vertical flat surfaces.
International Journal of Heat and Mass Transfer,
Vol. 48,
Issue. 8,
p.
1494.
Tardu, Sedat F.
2008.
Conjugate response of a thermal boundary layer with reverse flow.
International Journal of Thermal Sciences,
Vol. 47,
Issue. 5,
p.
514.
Yang, Yingchen
Jones, Douglas L.
and
Liu, Chang
2010.
Recovery of rectified signals from hot-wire/film anemometers due to flow reversal in oscillating flows.
Review of Scientific Instruments,
Vol. 81,
Issue. 1,
Berson, Arganthaël
Blanc-Benon, Philippe
and
Comte-Bellot, Geneviève
2010.
On the use of hot-wire anemometry in pulsating flows. A comment on ‘A critical review on advanced velocity measurement techniques in pulsating flows’.
Measurement Science and Technology,
Vol. 21,
Issue. 12,
p.
128001.
GELDERBLOM, H.
VAN DER HORST, A.
HAARTSEN, J. R.
RUTTEN, M. C. M.
VAN DE VEN, A. A. F.
and
VAN DE VOSSE, F. N.
2011.
Analytical and experimental characterization of a miniature calorimetric sensor in a pulsatile flow.
Journal of Fluid Mechanics,
Vol. 666,
Issue. ,
p.
428.
Gomaa, H.G.
and
Rao, S.
2011.
Analysis of flux enhancement at oscillating flat surface membranes.
Journal of Membrane Science,
Vol. 374,
Issue. 1-2,
p.
59.
Zeng, W.
Gomaa, H.G.
Liu, J.
and
Zhu, J.
2013.
Intensification of production of O/W emulsions using oscillatory woven metal micro-screen (WMMS).
Chemical Engineering and Processing: Process Intensification,
Vol. 73,
Issue. ,
p.
111.
Li, Guoneng
Zheng, Youqu
Hu, Guilin
and
Zhang, Zhiguo
2013.
Experimental investigation on heat transfer enhancement from an inclined heated cylinder with constant heat input power in infrasonic pulsating flows.
Experimental Thermal and Fluid Science,
Vol. 49,
Issue. ,
p.
75.
Gomaa, H.G.
Liu, J.
Sabouni, R.
and
Zhu, J.
2014.
Experimental and theoretical analysis of emulsification characteristics using a high porosity microscreen under oscillatory shear conditions.
Colloids and Surfaces A: Physicochemical and Engineering Aspects,
Vol. 456,
Issue. ,
p.
160.