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Issues of predicting performance of thermosyphon heat exchangers
Jane H. Davidson, Scott D Dahl
Mechanical Engineering
Research output
:
Contribution to conference
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Paper
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peer-review
1
Scopus citations
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Dive into the research topics of 'Issues of predicting performance of thermosyphon heat exchangers'. Together they form a unique fingerprint.
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Keyphrases
Performance Prediction
100%
Thermosyphon Heat Exchanger
100%
Thermosiphon Flow
100%
Heat Exchanger
60%
Heat Exchanger Performance
40%
System Performance
20%
Prediction Accuracy
20%
Performance Measures
20%
Operating Conditions
20%
Temperature Distribution
20%
Overall Heat Transfer Coefficient
20%
Natural Convection Heat Transfer Coefficient
20%
Temperature Difference
20%
Two-pass
20%
In-shell
20%
Modeling Issues
20%
Anti-freezing
20%
Area Product
20%
Pressure Balance
20%
Double Wall
20%
Solar Heating System
20%
Water Loop
20%
Engineering
Flow Rate
100%
Exchanger
100%
Flow Velocity
100%
Natural Convection
14%
Convection Heat Transfer Coefficient
14%
Double Wall
14%
Systems Performance
14%
Heat Transfer Coefficient
14%
Pressure Balance
14%
Solar Heating System
14%
Temperature Distribution
14%
Chemical Engineering
Heat Transfer Coefficient
100%
Thermosyphon Heat Exchanger
100%
Temperature Distribution
50%
Natural Convection
50%
Solar Heating
50%
Heat Convection
50%