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Condensation heat transfer of HFO-1234yf and HFC-134a in small tube
Hamid Nalbandian,
Chien Yuh Yang
Department of Mechanical Engineering
Research output
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Contribution to conference
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peer-review
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Keyphrases
Air Condition System
14%
Annular Flow
14%
Automobile
14%
Blasius
14%
Condensation Heat Transfer
100%
Double pipe
14%
Film Condensation
14%
Flow Pattern
42%
Forced Condensation
14%
Global Warming Potential
14%
Gravity Effect
14%
Heat Transfer
14%
Heat Transfer Coefficient
42%
HFC-134a
100%
HFO-1234yf
100%
Inner Tube
14%
Mass Flux
28%
Mass Quality
14%
Multiphase Fluid
14%
Primary Force
14%
Refrigerant
57%
Shah
14%
Shear Effect
14%
Shear Stress
14%
Single-phase Heat Transfer
14%
Slug Flow
14%
Small Tube
100%
Tube Diameter
14%
Vapor Quality
57%
Engineering
Air Condition
33%
Annular Flow
33%
Condensation Heat Transfer
100%
Condensation Heat Transfer Coefficient
66%
Diameter Tube
33%
Experimental Result
66%
Film Condensation
33%
Flow Pattern
100%
Global Warming Potential
33%
Heat Transfer Coefficient
100%
Liquid Phase
33%
Mass Transfer
66%
Slug Flow
33%
Test Result
33%
Test Section
33%