Engineering
Energy Engineering
100%
Applications
100%
Control Synthesis
100%
Performance
61%
Models
55%
Dehumidification
33%
Built Environment
22%
Energy Building
16%
Air Condition
11%
Cycle Time
11%
Flow Field
11%
Experiments
11%
Measured Result
11%
Boundary Condition
11%
Fabrication
11%
Coating
11%
Properties
11%
Silica Gel
11%
Diffusivity
11%
Outlet Air
5%
Drive Force
5%
Potential Application
5%
Correlation
5%
Coating Thickness
5%
Air Velocity
5%
Crystal Size
5%
Cutting Edge
5%
Energy Market
5%
Power Supply
5%
Heat Transfer
5%
Determines
5%
Porosity
5%
Actual Condition
5%
Primary Energy
5%
Calculates
5%
Harmonic Wave
5%
Design
5%
Simulated Result
5%
Parametric Study
5%
Optimization
5%
Obtains
5%
Research
5%
Numerical Calculation
5%
Dynamic Performance
5%
Isothermal
5%
Force Model
5%
Surrounding Air
5%
Kinetic
5%
Accuracy
5%
Past Decade
5%
Fick's Law
5%
System Structure
5%
Simulation
5%
Measurement
5%
Volumetrics
5%
Numerical Approach
5%
Mass Transfer
5%
Water
5%
Physics
Metal Organic Framework
100%
Utilization
100%
Performance
66%
Model
61%
Humidity
44%
Dehumidification
33%
Buffering
27%
Sorption
27%
Environment
22%
Variations
16%
Coefficient of Performance
16%
Coating
16%
Air
16%
Carbon Dioxide Emission
11%
Fabrication
11%
Flow Distribution
11%
Silica Gel
11%
Boundary Condition
11%
Cycles
11%
Simulation
5%
Square Wave
5%
Geometry
5%
Volume
5%
Impact
5%
Work
5%
Mass Transfer
5%
Ratios
5%
Charge Flow Device
5%
Optimization
5%
Affinity
5%
Symmetry
5%
Responses
5%
Correlation
5%
Porosity
5%
Water Vapor
5%
Adsorption
5%
Diffusivity
5%
Value
5%
Kinetics
5%
Air Flow
5%
Running
5%
Porous Material
5%
Calculation
5%
Harmonics
5%
Crystals
5%
Heat
5%
Cutting
5%
Speed
5%
Material Science
Characterization
100%
Metal-Organic Framework
100%
Coating
16%
Air
16%
Devices
11%
Material
11%
Silica Gel
11%
Novel Material
11%
Zeolite
11%
Adsorption
11%
Computational Fluid Dynamics
11%
Water Vapor
5%
Porous Material
5%
Void Fraction
5%
Materials Property
5%
Wood
5%
Correlation
5%
Crystal
5%
Velocity
5%
Nanocrystals
5%