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Phase change materials ranking by using the analytic hierarchy process
Abid Nadeem
, Kaisar Rakhman
, Md Aslam Hossain
Department of Civil and Environmental Engineering
Nazarbayev University
Research output
:
Contribution to conference
›
Paper
›
peer-review
4
Citations (Scopus)
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Dive into the research topics of 'Phase change materials ranking by using the analytic hierarchy process'. Together they form a unique fingerprint.
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Keyphrases
Phase Change Material
100%
Analytic Hierarchy Process
100%
Material Ranking
100%
Building Envelope
25%
Materials Application
16%
Energy Saving Potential
8%
Melting Temperature
8%
Liquid-solid
8%
Selection Strategy
8%
Environmental Hazards
8%
Thermal Properties
8%
Liquid Phase
8%
Thermophysical Properties
8%
Fire Resistance
8%
Phase Change
8%
Building Applications
8%
Economic Feasibility
8%
Heat Flux
8%
Warm Climate
8%
Heating Needs
8%
Internal Heating
8%
Indoor Cooling
8%
Latent Heat of Fusion
8%
Cooling Requirements
8%
Multi-criteria Decision-making Tools
8%
Outdoor Temperature
8%
Material Release
8%
INIS
phase change materials
100%
applications
33%
building envelope
25%
climates
16%
heat
16%
solids
16%
liquids
16%
outdoors
16%
energy
8%
design
8%
economics
8%
optimization
8%
decision making
8%
heating
8%
atmospheres
8%
tools
8%
melting points
8%
cooling
8%
indoors
8%
hazards
8%
stability
8%
physical properties
8%
thermal properties
8%
heat flux
8%
fire resistance
8%
latent heat of fusion
8%
Engineering
Phase Change Material
100%
Building Envelope
25%
Energy Conservation
8%
Melting Temperature
8%
Hazards
8%
Selection Method
8%
Illustrates
8%
Internals
8%
Liquid Phase
8%
Latent Heat
8%
Great Variety
8%
Heat Store
8%
Fire Resistance
8%
Economic Feasibility
8%
Multi-Criteria Decision-Making
8%
Building Application
8%
Heat Flux
8%
Thermal Physical Property
8%
Provide Support
8%
Outdoor Temperature
8%
Cooling Requirement
8%
Chemical Engineering
Analytic Hierarchy Process
100%
Latent Heat
50%
Heat Flux
50%
Material Science
Phase Change Material
100%
Materials Application
16%
Physical Property
8%
Thermal Property
8%
Fire Resistance
8%