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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/26781
DC FieldValueLanguage
dc.contributor.authorChow, Yi-Chihen_US
dc.contributor.authorChang, Hong-Yangen_US
dc.contributor.authorNguyen, Duy Tongen_US
dc.contributor.authorLin, Chen-Chouen_US
dc.date.accessioned2026-08-10T03:12:14Z-
dc.date.available2026-08-10T03:12:14Z-
dc.date.issued2026/7/1-
dc.identifier.urihttp://scholars.ntou.edu.tw/handle/123456789/26781-
dc.description.abstractThe distinct engineering advantages of Oscillating Water Column (OWC) systems have driven substantial academic interest lately. This work examines the onshore U-shaped OWC (U-OWC), selected for its cost-effective installation integrated with existing coastal infrastructure and its superior broadband response to diverse wave climates. Time-domain CFD simulations, incorporating the scaling-rematched approach, were conducted to quantify key hydrodynamic and air-compressibility coefficients, including the amplitude of the wave exciting force, fluid damping coefficient, added mass, absorption factor, and the effective PTO (power take-off) damping and air-compressibility coefficients. These parameters collectively elucidate the underlying hydrodynamics and how they are interwoven with the compressibility of the air in the plenum chamber, thereby impacting the U-OWC's energy-capture performance under incident waves. A principal finding is the identification of a C+ interval wherein air compressibility enhances capture performance in the lower wave-period range examined (<8.0 s). The added mass of the present U-OWC exhibits a remarkably pronounced decrease around the wave period of 8.0 s, which can be verified by a simple resonance formula of heave buoys to underline its strong near-resonance behavior.en_US
dc.language.isoEnglishen_US
dc.publisherMDPIen_US
dc.relation.ispartofJOURNAL OF MARINE SCIENCE AND ENGINEERINGen_US
dc.subjectU-OWCen_US
dc.subjecthydrodynamic coefficientsen_US
dc.subjectair compressibilityen_US
dc.subjectadded massen_US
dc.subjectnear resonanceen_US
dc.subjectwave exciting forceen_US
dc.subjectabsorption factoren_US
dc.subjectC+ intervalen_US
dc.titleOnshore U-OWC Wave Energy Converter: A Hydrodynamic Study of Its Capture Performance Impacted by Air-Compressibility Effectsen_US
dc.typejournal articleen_US
dc.identifier.doi10.3390/jmse14131237-
dc.identifier.isiWOS:001818593300001-
dc.relation.journalvolume14en_US
dc.relation.journalissue13en_US
dc.relation.pages23en_US
dc.identifier.eissn2077-1312-
item.languageiso639-1English-
item.fulltextno fulltext-
item.grantfulltextnone-
item.openairecristypehttp://purl.org/coar/resource_type/c_6501-
item.openairetypejournal article-
item.cerifentitytypePublications-
crisitem.author.deptCollege of Engineering-
crisitem.author.deptDepartment of Systems Engineering and Naval Architecture-
crisitem.author.deptNational Taiwan Ocean University,NTOU-
crisitem.author.deptCollege of Engineering-
crisitem.author.deptDepartment of Mechanical and Mechatronic Engineering-
crisitem.author.deptNational Taiwan Ocean University,NTOU-
crisitem.author.orcid0000-0002-0066-5868-
crisitem.author.parentorgNational Taiwan Ocean University,NTOU-
crisitem.author.parentorgCollege of Engineering-
crisitem.author.parentorgNational Taiwan Ocean University,NTOU-
crisitem.author.parentorgCollege of Engineering-
Appears in Collections:機械與機電工程學系
系統工程暨造船學系
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