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Scenario-Based Simulation of Seismic Activity Patterns by Cellular Automaton
This study examines the adaptability of a scenario-based simulation for estimating seismic activity patterns. In order to solve the problems with our scenarios, we utilize the Cellular Automaton (CA) Method which introduces engineering judgements into local intercell relations on grid structures. Our proposed method is applied to cases where the temporal and spatial variations in earthquake occurrences are particularly complicated. Our final goal is to obtain regional features of earthquake occurrences in order to improve the accuracy of seismic hazard evaluations.
Scenario-Based Simulation of Seismic Activity Patterns by Cellular Automaton
This study examines the adaptability of a scenario-based simulation for estimating seismic activity patterns. In order to solve the problems with our scenarios, we utilize the Cellular Automaton (CA) Method which introduces engineering judgements into local intercell relations on grid structures. Our proposed method is applied to cases where the temporal and spatial variations in earthquake occurrences are particularly complicated. Our final goal is to obtain regional features of earthquake occurrences in order to improve the accuracy of seismic hazard evaluations.
Scenario-Based Simulation of Seismic Activity Patterns by Cellular Automaton
Nakajima, Masato (author) / Yamamoto, Kosuke (author)
Eighth International Conference on Computing in Civil and Building Engineering (ICCCBE-VIII) ; 2000 ; Stanford, California, United States
2000-08-04
Conference paper
Electronic Resource
English
Scenario-Based Simulation of Seismic Activity Patterns by Cellular Automation
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