Engineering
Accuracy
36%
Activity Coefficient
52%
Alkane
34%
Artificial Neural Network
17%
Base Fluid
8%
Baseplate
9%
Benchmark
31%
Boiling Heat
8%
Boiling Liquid
46%
Boiling Phenomenon
46%
Cavity
69%
Centrifugal Force
9%
Comparative Analysis
8%
Computer Simulation
33%
Cooling Performance
18%
Copper Substrate
9%
Demonstrates
8%
Design
52%
Design Result
9%
Enhancement
9%
Experimental Investigation
17%
Experimental Result
17%
Flow Boiling
69%
Heat Transfer Coefficient
9%
Heatsinks
69%
Heptane
17%
Horizontal Surface
23%
Hot Spot
9%
Infinite Dilution
52%
Insulated Gate Bipolar Transistor
19%
Level Set
52%
Measurement
17%
Models
50%
Modules
9%
Performance
9%
Predicted Result
34%
Pressure Distribution
23%
Recirculation
9%
Reliability
9%
Simulation
65%
Simulation Result
8%
Solute
69%
Stationary Phase
17%
Temperature
17%
Temperature Distribution
23%
Thermal Resistance
9%
Thermodynamics
17%
Three-Dimensional Models
9%
Two Dimensional
23%
Viscosity Solution
11%
Physics
Adhesion
58%
Area
9%
Boiling
46%
Boiling Problem
23%
Calculation
17%
Carbon Dioxide
69%
Carbon Dioxide
23%
Charge Flow Device
8%
Circulation
9%
Condensation Problem
23%
Coolant
19%
Cooling
8%
Curvature
26%
Extrapolation
9%
Film Thickness
23%
Growth
23%
Impact
23%
Increasing
9%
Model
44%
Nanofluid
37%
OpenFOAM
55%
Performance
9%
Phase Change
69%
Position (Location)
8%
Pressure Distribution
23%
Reliability
9%
Revisions
18%
Silicon
9%
Simulation
100%
Solder
9%
Speed
8%
Stability
13%
Standard
11%
Taguchi Methods
11%
Temperature
34%
Temperature Distribution
23%
Thermal Resistance
9%
Three Dimensional Models
9%
Value
11%
Volume
46%
Earth and Planetary Sciences
Accuracy
9%
Area
9%
Aspect
9%
Augmentation
9%
Centrifugal Force
9%
Circulation
9%
Cooling
8%
Creativity
9%
Effectiveness
9%
Extrapolation
9%
Fin
64%
Grease
9%
Heat Sink
30%
Heat Transfer Coefficient
9%
Heat Transmission
14%
Hot Spot
9%
Increasing
9%
Inflow
8%
Investigation
14%
Model
9%
Reliability
9%
Revision
18%
Route
9%
Show
14%
Silicon
9%
Simulation
9%
Solder
9%
Stability
13%
Thermal Resistance
9%
Three Dimensional Models
9%