Engineering
Heat Pipes
65%
Evaporator
28%
Demagnetization
25%
Thermal Resistance
17%
Cooling Performance
16%
Support Vessel
12%
Experimental Investigation
12%
Heat Capacity
12%
Micro Heat Pipe
12%
Activated Carbon
12%
Boil-off
12%
Thermal Characteristic
12%
Natural Frequency
12%
Residual Ultimate Strength
12%
Cooling Capacity
12%
Free Solution
12%
Low-Temperature
12%
Experimental Result
10%
Room Temperature
9%
Cooling Power
9%
Temperature Range
7%
Stainless Steel
7%
Fluid Inventory
7%
Flow Region
6%
Pressure Drop
6%
Heat Source
6%
Temperature Base
6%
Porous Structure
6%
Laminar Flows
6%
Good Agreement
6%
Fluid Flow
6%
Darcy's Law
6%
Flowing Fluid
6%
Adsorption
6%
Cord Length
6%
Heating Load
6%
Filling Pressure
5%
Holding Time
5%
Aspect Ratio
5%
Chemical Engineering
Cryogenics
100%
Thermal Load
17%
Liquid Nitrogen
14%
Sorption
12%
Specific Heat
12%
Cryogenic Liquid
9%
Activated Carbon
6%
Fluid Flow
6%
Material Science
Mechanical Strength
18%
Kevlar
12%
Aluminum Alloys
12%
Heat Resistance
12%
Fluid Flow
12%
Laminar Flows
12%
Powder
12%
Mechanical Vibration
12%
Stainless Steel
12%
2024 Aluminium Alloy
12%
Ultralow Thermal Conductivity
6%
Finite Element Method
6%
Density
6%