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Nature-inspired double corrugated geometry for enhanced heat transfer
Kristina Navickaité
Department of Energy Conversion and Storage
Research output
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Book/Report
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Ph.D. thesis
562
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Dive into the research topics of 'Nature-inspired double corrugated geometry for enhanced heat transfer'. Together they form a unique fingerprint.
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Engineering
Regenerator
100%
Heat Pump
53%
Computational Fluid Dynamics
38%
Experimental Result
30%
Thermal Performance
23%
Hydraulics
23%
Constant Pressure Drop
23%
Straight Tube
23%
Reynolds' Number
15%
Friction Factor
15%
Exchanger
15%
Cooling Power
15%
Aspect Ratio
15%
Coefficient of Performance
15%
Flow Channel
15%
Counterflow Heat Exchanger
15%
Nusselt Number
15%
Flow Rate
7%
Low-Temperature
7%
Spherical Particle
7%
Packed Bed
7%
Numerical Prediction
7%
One Dimensional
7%
Size of Particle
7%
Microchannel
7%
Equivalent Diameter
7%
Developed Flow
7%
Developed Device
7%
Heat Transfer Rate
7%
Shapes of Particle
7%
Selective Laser Melting
7%
Pumping Power
7%
Channel Matrix
7%
Geometrical Characteristic
7%
Hydraulic Diameter
7%
Underfloor Heating
7%
Number Factor
7%
Section Area
7%
Transfer Process
7%
Boundary Condition
7%
Room Temperature
7%
Heating System
7%
Pressure Drop
7%
High Aspect Ratio
7%
Chemical Engineering
Nusselt Number
100%
Potable Water
50%
Keyphrases
Active Magnetic Refrigeration
23%
Thermo-hydraulic Performance
17%
Cylindrical Microchannel
5%
Heat Pump Heating System
5%
In-shell
5%
Radial Axis
5%
Heat Regenerator
5%