Skip to main navigation
Skip to search
Skip to main content
Teesside University's Research Portal Home
Search content at Teesside University's Research Portal
Home
Profiles
Research units
TeesRep
Student theses
Projects
Datasets
Equipment
Press/Media
Energy performance of 3d-printed concrete walls: A numerical study
Thadshajini Suntharalingam
, Irindu Upasiri
, Perampalam Gatheeshgar
, Keerthan Poologanathan
, Brabha Nagaratnam
, Paulo Santos
, Heshachanaa Rajanayagam
SCEDT Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
6
Link opens in a new tab
Citations (Scopus)
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Energy performance of 3d-printed concrete walls: A numerical study'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
3D Printed Concrete Walls
100%
Analytical Solution
20%
Building Sector
20%
Cavity Insulation
40%
Cavity Wall
40%
Concrete Wall
20%
Construction Applications
20%
Construction Industry
20%
Digital Fabrication
20%
Emergency Shelter
20%
Energy Performance
100%
Existing Knowledge
20%
Experimental Solution
20%
Finite Element Model
20%
Industry Sector
20%
Low Energy
20%
Novel Technique
20%
Office Building
20%
Office Emergencies
20%
Performance Enhancement
20%
Potential Development
20%
Printed Concrete
100%
Recent Past
20%
Relative Energy
20%
Standard Regulations
20%
Sustainable Built Environment
20%
Thermal Characterization
20%
Thermal Efficiency
20%
Thermal Energy Performance
20%
Thermal Insulation
20%
Thermal Performance
20%
Thermal Transmittance
40%
Three-dimensional-printed
100%
Total Energy Consumed
20%
U-value
60%
Wall Configuration
40%
Wall Panel
20%
Engineering
Building Sector
20%
Concrete Wall
100%
Construction Application
20%
Energy Performance
100%
Finite Element Modeling
20%
Industry Sector
20%
Main Driving Force
20%
Numerical Analysis
100%
Numerical Study
100%
Office Buildings
20%
Sustainable Build Environment
20%
Thermal Characterization
20%
Thermal Energy
20%
Thermal Insulation
20%
Thermal Performance
20%
Thermal Transmittance
40%
Thermodynamic Efficiency
20%
Wall Panel
20%
Material Science
Finite Element Modeling
100%
Thermal Insulation
100%