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Effect of adiabatic co-planar extension surfaces on wind-related solar-collector heat transfer coefficients
E. M. Sparrow, S. C. Lau
Mechanical Engineering
Research output
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Contribution to journal
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Article
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peer-review
12
Scopus citations
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Dive into the research topics of 'Effect of adiabatic co-planar extension surfaces on wind-related solar-collector heat transfer coefficients'. Together they form a unique fingerprint.
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Keyphrases
Heat Transfer Coefficient
100%
Trailing Edge
100%
Coplanar
100%
Solar Collector
100%
Planar Extension
100%
Heat Transfer
33%
Reynolds number
33%
Wind Tunnel Experiment
33%
Active Area
33%
Characteristic Dimensions
33%
Plate Surface
33%
Average Heat Transfer Coefficient
33%
Air Stream
33%
Flat Plate Solar Collector
33%
Inclination Angle
33%
Outer Edge
33%
Transfer Response
33%
Engineering
Extension Surface
100%
Trailing Edge
100%
Leading Edge
100%
Heat Transfer Coefficient
100%
Solar Collector
100%
Reynolds' Number
33%
Active Area
33%
Airstream
33%
Plate Surface
33%
Average Heat Transfer Coefficient
33%
Outer Edge
33%
Flat Plate
33%
Tunnel
33%