Engineering
Liquid Hydrogen
100%
Boil-off
50%
Capture System
50%
Flue Gas
50%
Air Conditioning
50%
Carbon Footprint
50%
Moving Part
37%
Hydrogen Storage
37%
Limitations
37%
Carbon Capture
37%
Exergy Efficiency
25%
Heating Temperature
25%
Heavy Fuel Oil
25%
Chilling Water
25%
Office Buildings
25%
Hydrogen Liquefaction
25%
Stirling Cycle
25%
Resonator
25%
Exhaust Gas
25%
Thermoeconomic Analysis
25%
Thermoacoustic Refrigeration
25%
Demonstrates
25%
Niche Application
25%
Industrial Waste Heat
25%
Design Condition
12%
Adaptability
12%
Operating Frequency
12%
Harmonics
12%
Matching Condition
12%
Fixed Parameter
12%
Operating Parameter
12%
Application Field
12%
Storage Tank
12%
Control Room
12%
Selective Catalytic Reduction
12%
Marine Applications
12%
Carbon Dioxide Capture
12%
Cool Process
12%
Carbon Capture and Storage
12%
Sustainable Energy
12%
Nominal Capacity
12%
Post-Combustion Capture
12%
Gas Storage
12%
Steam Power Plant
12%
Electrostatic Precipitator
12%
Flue Gas Desulfurisation
12%
Emission Source
12%
Keyphrases
Heat-driven
50%
Technology Demonstration
50%
Numerical Investigation
50%
Liquid Hydrogen
50%
Cryocooler
50%
Zero Boil-off
50%
Thermoacoustic Device
50%
Thermoacoustics
40%
Pulse Tube Cryocooler
40%
Sulfur Capture
33%
Duplex
30%
Free-piston Stirling
30%
Stirling Cryocooler
30%
Mean Pressure
20%
Exergy Efficiency
20%
Heating Temperature
20%
Commercial Space
16%
System Viability
16%
Carbon Mitigation
16%
Thermoacoustic Refrigeration
16%
Exhaust Gas Waste Heat
16%
Water chilling
16%
Thermoacoustic Machine
16%
Factory Building
16%
Cryogenic Carbon Capture
16%
Liquid Hydrogen Storage
16%
Hydrogen Liquefaction
16%
Stirling Cycle
16%
Industrial Waste Utilization
16%
Ambient Temperature
10%
Design Condition
10%
Promising Solutions
10%
Operating Parameters
10%
Operating Conditions
10%
Operating Frequency
10%
Moving Parts
10%
Fixed Parameter
10%
Harmonic Oscillator
10%
Liquid Hydrogen Storage Tank
10%
Multi-conditions
10%
Pressure-temperature
10%