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Numerical Simulation and Analysis of Axially Restrained Steel Cellular Beams in Fire
Asal Pournaghshband
School of Physics, Engineering & Computer Science
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Dive into the research topics of 'Numerical Simulation and Analysis of Axially Restrained Steel Cellular Beams in Fire'. Together they form a unique fingerprint.
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Keyphrases
Axial Restraint
14%
Axial Restraint Stiffness
14%
Axial Stiffness
14%
Beam Behavior
14%
Catenary Action
14%
Cellular Beams
14%
Equivalent Beam Model
14%
Equivalent Carbons
14%
Fast Construction
14%
High Thermal Expansion
14%
Large Deflection
14%
Large Deflection Theory
14%
Life Cycle Sustainability
14%
Load Level
14%
Moment-shear Interaction
14%
Restrained Steel Beam
14%
Stainless Steel Materials
14%
Steel Cellular Beams
100%
Steel Grade
14%
Structural Continuity
28%
Structural Frames
14%
Thermomechanical Performance
14%
Web Opening
28%
Withstanding High Temperature
14%
Engineering
Axial Stiffness
20%
Beam Behavior
20%
Load Level
20%
Steel Beam
20%
Structural Frames
20%