Chapter
Apr 26, 2012
Model Scenarios of Shoreline Change at Kaanapali Beach, Maui, Hawaii: Seasonal and Extreme Events
Authors: Sean Vitousek [email protected], Charles H. Fletcher [email protected], Mark A. Merrifield [email protected], Geno Pawlak [email protected], and Curt D. Storlazzi [email protected]Author Affiliations
Publication: Coastal Sediments '07
Abstract
Kaanapali beach is a well-defined littoral cell of carbonate sand extending 2 km south from Black Rock (a basalt headland) to Hanakao'o Point. The beach experiences dynamic seasonal shoreline change forced by longshore transport from two dominant swell regimes. In summer, south swells (Hs = 1–2 m Tp = 14–25 s) drive sand to the north, while in winter, north swells (Hs = 5–8 m Tp = 14–20 s) drive sand to the south where it accumulates on a submerged fossil reef. The Delft3D modeling system accurately predicts directly observed tidal currents and wave heights around West Maui, and is applied to simulate shoreline change. Morphologic simulations qualitatively resolve the observed seasonal behavior.
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© 2007 American Society of Civil Engineers.
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Published online: Apr 26, 2012
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Department of Geology and Geophysics, 1680 East-West Rd. POST Room 721, Honolulu, Hawaii, 96822. E-mail: [email protected]
Department of Geology and Geophysics, 1680 East-West Rd. POST Room 721, Honolulu, Hawaii, 96822. E-mail: [email protected]
Department of Oceanography, 1000 Pope Road, MSB 317, Honolulu, HI 96822. E-mail: [email protected]
Department of Ocean Resource Engineering, 2540 Dole St., Holmes Hall 404, Honolulu, Hawaii 96822. E-mail: [email protected]
USGS Pacific Science Center 400 Natural Bridges Drive Santa Cruz, CA, 95060. E-mail: [email protected]
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