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Multi-Scale Numerical Simulation of Tsunami-Driven Debris-Field Impacts
In current practice, debris-field impact loading for near-water structures is usually derived from (1) infrequent case histories, (2) simplified analytical equations, and (3) practitioner experience. Via advanced numerical simulation of tsunami-driven debris-field impacts at multiple scales and conditions, we are now forging a modeling approach to address a wider range of scenarios. Broadened cases are characterized, with chaotic natures expressed stochastically. The analytical tools have the potential to strengthen the basis of ASCE 7 guidelines and to encompass events not yet described in the code.
Multi-Scale Numerical Simulation of Tsunami-Driven Debris-Field Impacts
In current practice, debris-field impact loading for near-water structures is usually derived from (1) infrequent case histories, (2) simplified analytical equations, and (3) practitioner experience. Via advanced numerical simulation of tsunami-driven debris-field impacts at multiple scales and conditions, we are now forging a modeling approach to address a wider range of scenarios. Broadened cases are characterized, with chaotic natures expressed stochastically. The analytical tools have the potential to strengthen the basis of ASCE 7 guidelines and to encompass events not yet described in the code.
Multi-Scale Numerical Simulation of Tsunami-Driven Debris-Field Impacts
Bonus, Justin (author) / Arduino, Pedro (author) / Motley, Michael (author) / Eberhard, Marc (author)
16th Triennial International Conference ; 2022 ; Honolulu, Hawaii
Ports 2022 ; 328-339
2022-09-15
Conference paper
Electronic Resource
English
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