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Heat transfer characteristics of alternating discrete flow in micro-tubes
Y.S. Lim
,
Ching Man Yu
, J.U. Schluter
Research output
:
Journal article publication
›
Journal article
›
Academic research
›
peer-review
2
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Dive into the research topics of 'Heat transfer characteristics of alternating discrete flow in micro-tubes'. Together they form a unique fingerprint.
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Keyphrases
Heat Transfer Characteristics
100%
Microtube
100%
Discrete Flow
100%
Flow Pattern
50%
Heat Transfer Performance
50%
Fully Developed Flow
50%
Pressure Loss
50%
Overall Heat Transfer Coefficient
25%
Nusselt number
25%
Friction Factor
25%
Pressure Fluctuation
25%
Flow Field
25%
Gas-liquid
25%
High Pressure
25%
Heat Transfer Enhancement
25%
Average Nusselt number
25%
Heat Capacity
25%
Viscosity
25%
Separated Phase
25%
Low Viscosity
25%
Immiscible Fluids
25%
Liquid-liquid
25%
Two-phase Flow
25%
Capillary number
25%
High Viscosity
25%
Weber number
25%
Phase number
25%
Frictional Loss
25%
Plug Flow
25%
Engineering
Microtube
100%
Secondary Phase
100%
Pressure Loss
28%
Fully Developed Flow
28%
Primary α Phase
28%
Flow Distribution
28%
Liquid Gas
14%
Average Nusselt Number
14%
Capillary Number
14%
Pressure Fluctuation
14%
Phase Number
14%
Fluid Viscosity
14%
Heat Capacity
14%
Two-Phase Flow
14%
Flow Pattern
14%
Nusselt Number
14%
Heat Transfer Enhancement
14%
Friction Factor
14%