Resonance in Hawaii waters from the 2006 Kuril Islands Tsunami
Резонанс в водах Гавайев, вызванный цунами 2006 года на Курильских островах
2008-04-01
SCID: 54.1/rnyrfvvh
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2006 Kuril Islands TsunamiFast Fourier Transformnonlinear shallow-water modelstanding edge wavestsunami resonance
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Abstract (AI)
The 2006 Kuril Islands Tsunami, while not destructive to coastal properties, resulted in prolonged oscillations in Hawaii waters. This study examines the oscillation patterns and amplification through reconstruction of the tsunami using a nonlinear shallow‐water model. After validation with water‐level measurements, a Fast Fourier Transform of the computed surface elevation reveals profound oscillation modes at various periods around the Hawaiian Islands. The oscillation at the regional scale consists of standing waves across the island chain and resonance in interconnected channels, embayments, and shallow shelves. Resonance in embayments and standing edge waves dominate the oscillation in coastal waters. The results show strong correlation between bathymetric features and resonance oscillations and identify tsunami hazard areas for planning and emergency management.
Key Findings
1
A validated nonlinear shallow-water reconstruction and Fast Fourier Transform identified pronounced oscillation modes across multiple periods around the Hawaiian Islands.
2
Bathymetric features strongly correlate with resonance behavior, enabling identification of tsunami hazard areas for planning and emergency management.
3
Regional oscillations involve standing waves across the island chain and resonance within interconnected channels, embayments, and shallow shelves.
4
Resonance in embayments and standing edge waves dominate tsunami oscillations in coastal waters.
5
The 2006 Kuril Islands Tsunami produced prolonged oscillations in Hawaiian waters despite causing no destructive coastal-property damage.
Research Object
Hawaii waters affected by the 2006 Kuril Islands Tsunami
Research Subject
Tsunami-induced oscillation patterns and resonance amplification associated with bathymetry, including standing waves and resonance in channels, embayments, and shallow shelves
Publication Details
Publication Date
2008-04-01
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