Keyphrases
Composite Phase Change Material
100%
Thermal Energy Storage
80%
Thermal Energy Storage Device
50%
Thermochemical Reactor
40%
Experimental Validation
40%
Model Validation
40%
System Performance
40%
High-temperature Thermal Energy Storage
40%
Charging Conditions
40%
Heating Device
40%
Charging Time
40%
Discharge Behavior
40%
Fixed Bed
40%
Composite Structures
40%
Condition Modelling
40%
Thermal Properties
40%
Ironmaking
40%
Sodium Nitrite
40%
CO2 Splitting
40%
Sodium Nitrate
40%
Double Perovskite
40%
Microstructure Properties
40%
Industrial Decarbonization
40%
Medium Temperature
40%
Discharge Process
33%
Decarbonization
30%
Thermochemical Heat Storage
26%
Temperature Lift
26%
Capacity System
20%
Mobile Use
20%
Time-controllable
20%
Storage Capacity
20%
Time-varied
20%
Energy Density
20%
Energy Consumption
20%
Power Rate
20%
CFD Modeling
20%
High Melting Temperature
20%
Peak Time
20%
Energy Shift
20%
Mathematical Modeling
20%
Predict-then-optimize
20%
Charging-discharging
20%
Domestic Use
20%
Charging Process
20%
Domestic Sector
20%
Renewable Energy
20%
Safety Aspects
20%
Overall Efficiency
20%
Heat Loss
20%
Engineering
Heat Storage
80%
Phase Change Material
53%
Energy Storage
50%
Temperature Lift
40%
Thermochemical Heat Storage
40%
Fixed Bed
40%
Ironmaking Process
40%
Direct-Reduced Iron
40%
Climatic Change
40%
Steel Making
40%
Climate Change
40%
Ceramics and Glass
40%
Blast Furnace
40%
Steel Sector
40%
Ferrous Metal
40%
Temperature Range
40%
Reactor Design
40%
Iron
40%
Applicability
40%
Moderate Temperature
40%
Industrial Sector
40%
Flux Density
33%
Experimental Result
33%
Systems Performance
26%
Charging Time
26%
Heat Storage Technology
20%
Outlet Temperature
20%
Flow Direction
20%
Root Mean Square Error
20%
Experimental Work
20%
Charging Temperature
20%
Flow Velocity
20%
Early Stage
20%
Storage Capacity
19%
Computational Fluid Dynamics
19%
Energy Shift
13%
Renewable Energy Source
13%
Melting Point
13%
Heat Losses
13%
Safety Aspect
13%
Melting Temperature
13%
Peak Time
13%
Two Dimensional
11%
Outlet Air
5%
Discharging Period
5%
Storage Medium
5%
Key Parameter
5%
Dimensional Model
5%
Thermal Performance
5%
Three-Dimensional Models
5%