Journal Article
Wave Load Mitigation by Perforation of Monopiles
Jacob Andersen; Rune Abrahamsen; Thomas Andersen; Morten Andersen; Torben Baun; Jesper Neubauer
Journal of Marine Science and Engineering · Vol. 8, Issue 5 · pp. 352 · 2020
Abstract
The design of large diameter monopiles (8–10 m) at intermediate to deep waters is largely driven by the fatigue limit state and mainly due to wave loads. The scope of the present paper is to assess the mitigation of wave loads on a monopile by perforation of the shell. The perforation design consists of elliptical holes in the vicinity of the splash zone. Wave loads are estimated for both regular and irregular waves through physical model tests in a wave flume. The test matrix includes waves with Keulegan–Carpenter ( K C ) numbers in the range 0.25 to 10 and covers both fatigue and ultimate limit states. Load reductions in the order of 6%–20% are found for K C numbers above 1.5. Significantly higher load reductions are found for K C numbers less than 1.5 and thus the potential to reduce fatigue wave loads has been demonstrated.
Bibliographic Information
| Journal | Journal of Marine Science and Engineering |
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| Publisher | MDPI |
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| Publication Date | 2020-05-16 |
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| Publication Year | 2020 |
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| Volume | 8 |
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| Issue | 5 |
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| Pages | 352 |
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| Document Type | Journal Article |
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| eISSN | 2077-1312 |
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| DOI | 10.3390/jmse8050352 |
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| Subject | Marine science; oceanography; marine engineering; coastal science; marine environment |
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Access Information
This article is openly available from the publisher.