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Applicability of the goda–takahashi wave load formula for vertical slender hydraulic structures

  • Nadieh Elisabeth Meinen*
  • , Raphaël Daniël Johannes Maria Steenbergen
  • , Bas Hofland
  • , Sebastiaan Nicolaas Jonkman
  • *Kontaktforfatter
  • TNO Netherlands Organisation for Applied Scientific Research
  • Ghent University
  • Delft University of Technology

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

Abstract

Vertical slender hydraulic structures such as sluices, navigation locks, or storm-surge barriers are often dynamically loaded by waves. For a safe and economic design, an accurate description of the wave loads is needed. A widely used formula for this purpose is the Goda–Takahashi wave load formula (GT). It was derived for the assessment of gravity-based caisson breakwaters. Due to its many advantages, the formula is also often employed for the assessment of vertical slender hydraulic structures, although its applicability to those type of structures was never fully demonstrated. This study provides insights in the applicability of GT for vertical slender hydraulic structures. This is done based on a literature review on the historical backgrounds of GT, and an investigation of several case-studies. In the case-studies, the equivalent-static wave loads for caisson breakwaters in scope of GT are compared with those for vertical slender hydraulic structures. The results show that GT can safely be applied for vertical slender hydraulic structures loaded by pulsating wave loads, but that systematic over-or under-estimations are expected for breaking or impact wave loads. For individual cases, differences up to 200% were obtained. These large over-or under-estimations underline the need for an improvement of the current design tools for vertical slender hydraulic structures loaded by breaking or impact wave loads.

OriginalsprogEngelsk
Artikelnummer868
TidsskriftJournal of Marine Science and Engineering
Vol/bind8
Udgave nummer11
Antal sider31
ISSN2077-1312
DOI
StatusUdgivet - nov. 2020
Udgivet eksterntJa

Bibliografisk note

Funding Information:
This research was funded by Rijkswaterstaat (Grote Projecten en Onderhoud), the executive agency of the Dutch Ministry of Infrastructure and Water Management.

Funding Information:
Funding: This research was funded by Rijkswaterstaat (Grote Projecten en Onderhoud), the executive agency of the Dutch Ministry of Infrastructure and Water Management.

Publisher Copyright:
© 2020 by the authors. Licensee MDPI, Basel, Switzerland.

Finansiering

This research was funded by Rijkswaterstaat (Grote Projecten en Onderhoud), the executive agency of the Dutch Ministry of Infrastructure and Water Management. Funding: This research was funded by Rijkswaterstaat (Grote Projecten en Onderhoud), the executive agency of the Dutch Ministry of Infrastructure and Water Management.

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