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Modeling Hydrodyanmic Roughness in the Lubricated Pipe Flow of Unconventional Oils
Mapping Intimacies
◽
10.2523/iptc-19999-ms
◽
2020
◽
Author(s):
Sayeed Rushd
Keyword(s):
Pipe Flow
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Cited By
References
Direct numerical simulation for transient turbulent pipe flow with sudden wall-rotation
Proceedings of the Sixth International Symposium On Turbulence, Heat and Mass Transfer
◽
10.1615/ichmt.2009.turbulheatmasstransf.2020
◽
2009
◽
Author(s):
M. Okamoto
◽
Y. Chiyomori
Keyword(s):
Numerical Simulation
◽
Direct Numerical Simulation
◽
Pipe Flow
◽
Turbulent Pipe Flow
Download Full-text
CONVECTIVE HEAT TRANSFER IN A WAVY PIPE FLOW
Proceeding of International Heat Transfer Conference 11
◽
10.1615/ihtc11.2570
◽
1998
◽
Author(s):
Czeslaw Oleskowicz Popiel
◽
Janusz Wojtkowiak
Keyword(s):
Heat Transfer
◽
Convective Heat Transfer
◽
Convective Heat
◽
Pipe Flow
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EFFECT OF GAS PIPE FLOW DIRECTION ON A PASSIVE SUBSEA COOLER EFFECTIVENESS: RESULTS OF 3D CONJUGATE HEAT TRANSFER SIMULATION
Proceeding of Proceedings of CHT-17 ICHMT International Symposium on Advances in Computational Heat Transfer May 28-June 1, 2017, Napoli, Italy
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10.1615/ichmt.2017.1440
◽
2017
◽
Author(s):
Nikolay Ivanov
◽
Vladimir V. Ris
◽
Nikolay A. Tschur
◽
Marina Zasimova
Keyword(s):
Heat Transfer
◽
Pipe Flow
◽
Conjugate Heat Transfer
◽
Flow Direction
◽
Heat Transfer Simulation
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TIME-RESPONSE OF TURBULENT HEAT TRANSFER IN A PIPE FLOW AT SUDDEN ACCELERATION AND DECELERATION
10.1615/ihtc16.cov.022949
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2018
◽
Author(s):
Hajime Nakamura
◽
Shunsuke Yamada
Keyword(s):
Heat Transfer
◽
Pipe Flow
◽
Time Response
◽
Turbulent Heat Transfer
◽
Turbulent Heat
◽
Acceleration And Deceleration
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HEAT TRANSFER AND FRICTION FACTORS FOR PURELY VISCOUS NON-NEWTONIAN FLUIDS IN TURBULENT PIPE FLOW
10.1615/ihtc5.2090
◽
1974
◽
Cited By ~ 24
Author(s):
Sang s. Yoo
◽
James P. Hartnett
Keyword(s):
Heat Transfer
◽
Pipe Flow
◽
Newtonian Fluids
◽
Turbulent Pipe Flow
◽
Friction Factors
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DISTRIBUTION OF COHERENT STRUCTURES IN TURBULENT PIPE FLOW
Journal of Flow Visualization and Image Processing
◽
10.1615/jflowvisimageproc.v8.i2-3.130
◽
2001
◽
Vol 8
(2-3)
◽
pp. 10
◽
Cited By ~ 2
Author(s):
F. Schneider
◽
Wolfgang Merzkirch
Keyword(s):
Coherent Structures
◽
Pipe Flow
◽
Turbulent Pipe Flow
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Characterization of heat transfer fluctuation in a turbulent pipe flow with rectangular wave pulsation
Proceeding of THMT-18. Turbulence Heat and Mass Transfer 9 Proceedings of the Ninth International Symposium On Turbulence Heat and Mass Transfer
◽
10.1615/thmt-18.670
◽
2018
◽
Author(s):
Hajime Nakamura
◽
Shunsuke Yamada
Keyword(s):
Heat Transfer
◽
Pipe Flow
◽
Turbulent Pipe Flow
◽
Rectangular Wave
Download Full-text
Modeling near-wall effects in axially rotating pipe flow by elliptic relaxation
AIAA Journal
◽
10.2514/3.13949
◽
1998
◽
Vol 36
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pp. 1164-1170
Author(s):
B. A. Pettersson
◽
H. I. Andersson
◽
A. S. Brunvoll
Keyword(s):
Pipe Flow
◽
Wall Effects
◽
Elliptic Relaxation
◽
Rotating Pipe Flow
◽
Near Wall
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PREDICTION OF PRESSURE GRADIENT IN STRATIFIED LIQUID-LIQUID PIPE FLOW WITH ENTRAINMENT EFFECTS
10.26678/abcm.cobem2017.cob17-1051
◽
2017
◽
Author(s):
Gustavo Bochio
◽
Oscar Mauricio Hernandez Rodriguez
Keyword(s):
Pressure Gradient
◽
Pipe Flow
◽
Stratified Liquid
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STABILITY ANALYSIS OF LONG INTERFACIAL WAVES IN GAS-LIQUID PIPE FLOW USING A LEVEL-SET APPROACH
10.26678/abcm.encit2018.cit18-0064
◽
2018
◽
Author(s):
Matheus Dias
◽
Daniel Rodriguez
Keyword(s):
Stability Analysis
◽
Level Set
◽
Pipe Flow
◽
Interfacial Waves
◽
Level Set Approach
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