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Please use this identifier to cite or link to this item: http://ntour.ntou.edu.tw:8080/ir/handle/987654321/50670

Title: Appreciation of Static Bay Beach Concept for Coastal Management and Protection
Authors: John R-C. Hsu
Lindino Benedet
Antonio H. F. Klein
André L. A. Raabe
C.-P.Tsai
T.-W.Hsu
Contributors: 國立臺灣海洋大學:河海工程學系
Keywords: Headland bay beaches
static equilibrium
dynamic equilibrium
empirical bay shape model
computer software
stability assessment
shoreline protection
beach design
Date: 2008-01
Issue Date: 2018-10-22
Publisher: Journal of Coastal Research
Abstract: Abstract: Sandy bay beach in static equilibrium is the only physiographic feature that could remain stable without sediment supply in a persistent swell environment anywhere around the world. With a continuing trend of erosion to sandy beaches worldwide, a conservative and practical hypothesis is not to consider the mobile dynamic wave parameters but to safeguard against a sandy beach under vanishing supply in the future. To achieve this, an empirical bay shape equation is strongly recommended as one of the best coastal management options. Combining with MEPBAY, software derived for implementing the static bay beach concept on a display unit, this empirical bay shape equation is readily applicable to verify the stability of numerous headland bay beaches in natural and man-made condition. It is also adequate for coastal managers to apply this empirical equation as a valuable tool to aid in the creation of headland bay beaches for shore protection, recreation, and coastal management before embarking on sophisticated numerical modeling.
Relation: 24(1) pp.198-215
URI: http://ntour.ntou.edu.tw:8080/ir/handle/987654321/50670
Appears in Collections:[Department of Harbor and River Engineering] Periodical Articles

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