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Probabilistic simulation of glass fracture and fallout in fire
Jukka Hietaniemi
VTT Technical Research Centre of Finland
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Dive into the research topics of 'Probabilistic simulation of glass fracture and fallout in fire'. Together they form a unique fingerprint.
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Physics
Glass
93%
Fire
87%
Openings
56%
Fallout
31%
Cracking (Fracture)
31%
Variability
25%
Responses
25%
Model
18%
Shapes
18%
Heating
12%
Calculation
12%
Cracks
12%
Specific Heat
6%
Fracture
6%
Work
6%
Output
6%
Simulation
6%
Performance
6%
High Temperature
6%
Assessments
6%
Events
6%
Estimates
6%
Act
6%
Evaluation
6%
Failure
6%
Closing
6%
Engineering
Fires
87%
Windows
68%
Models
18%
Fire Safety
12%
Experiments
12%
Heating
12%
Crack
12%
Isothermal
6%
Simulators
6%
Good Agreement
6%
Do Model
6%
Broad Range
6%
Influencing Factor
6%
Gas Temperature
6%
Failure Model
6%
Pragmatic Approach
6%
Model Response
6%
Probabilistic Approach
6%
Safety Engineer
6%
Heat Capacity
6%
Performance
6%
Simulation
6%
Evaluation
6%
Engineering
6%
Determines
6%
Properties
6%
Failure (Mechanical)
6%
Characteristics
6%
Guideline
6%
High Temperature
6%
Events
6%
Fracture
6%
Glass Temperature
6%
Agricultural and Biological Sciences
Glass
100%
Fires
81%
Windows
68%
Variability
25%
Occurrence
18%
Fire Safety
12%
Temperature
12%
Fire Severity
6%
Engineering
6%
Objectives
6%
Guidelines
6%
Literature
6%
Engineers
6%
Computer Science
Simulation Mode
62%
Programs
12%
Monte Carlo Simulation
6%
High Temperature
6%
Influencing Factor
6%
Capacity Model
6%
Probabilistic Approach
6%
Simulation
6%
Events
6%
Evaluation
6%
Lower Bounds
6%
Material Science
Glass
93%
Crack
12%
Decoupling
6%