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Keyword [Fully developed]
Result: 1 - 20 | Page: 1 of 2
1.
Experimental Investigation And Numerical Simulation Of Turbulent Pipe Flow And The Tripping Effects
2.
The Influence Of Surface Roughness On Flow In Microchannel
3.
Unstructured Grid In The Periodically Fully Developed Flow Numerical Simulation Applications
4.
Study On The Flow And Heat Transfer Characteristics Of The Interrupted Micro-channel Heat Sink With Ribs
5.
Experiment And Numerical Simulation Of Liquid-solid Flow Characteristics In Fully-developed Section Of Narrow Channels
6.
Theoretical and experimental study on fully-developed compartment fires
7.
Enhancement of convective heat transfer in internal flows using an electrically-induced corona jet
8.
Heat transfer of fully developed flow in porous ducts
9.
Solutions to the fully developed convection heat transfer problem in core annular flows
10.
Investigation of cracking process and aggregate interlock properties of JPCP cracks
11.
Geometric collision rate of inertial particles in fully-developed turbulence
12.
Experimental investigation of fully developed augmented convection in a symmetrically grooved channel
13.
An experimental investigation for the effect of pulsation on heat transfer characteristics in pipe
14.
Heat transfer and pressure drop in flows perpendicular to an offset fin structure
15.
Experimental study in enhanced design of boiling surface used in jet impingement cooling and a complementary theoretical analysis for fully developed nucleate boiling
16.
A hydrodynamic film model for fully developed, annular, horizontal two-phase pipe flow
17.
An experimental and numerical investigation of mixed convection in channels and the application of extended surfaces for heat transfer enhancement
18.
Fully developed turbulent flow in rectangular interrupted-plate ducts
19.
COMBINED HEAT AND MASS TRANSFER NATURAL CONVECTION BETWEEN PARALLEL PLATES (LAMINAR)
20.
EFFECT OF SPATIALLY PERIODIC HEATING OR AN ABRUPT CONTRACTION AT INLET ON TRANSITIONAL AND TURBULENT HEAT TRANSFER IN A DUCT (UNSYMMETRIC, INTERRUPTED WALL CONDITIONS, SEPARATED FLOWS, ENHANCED, FORWARD STEP)
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