Experimental and Numerical Analysis of Wave Drift Force on KVLCC2 Moving in Oblique Waves

In this study, experimental and numerical methods were applied to estimate surge and sway wave drift forces and yaw drift moment acting on KVLCC2, advancing in oblique wave. An experiment was carried out in the ocean engineering basin of the Korea Research Institute of Ships and Ocean Engineering (K...

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Main Authors: Min Guk Seo, Yoon Jin Ha, Bo Woo Nam, Yeongyu Kim
Format: Article
Language:English
Published: MDPI AG 2021-01-01
Series:Journal of Marine Science and Engineering
Subjects:
Online Access:https://www.mdpi.com/2077-1312/9/2/136
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author Min Guk Seo
Yoon Jin Ha
Bo Woo Nam
Yeongyu Kim
author_facet Min Guk Seo
Yoon Jin Ha
Bo Woo Nam
Yeongyu Kim
author_sort Min Guk Seo
collection DOAJ
description In this study, experimental and numerical methods were applied to estimate surge and sway wave drift forces and yaw drift moment acting on KVLCC2, advancing in oblique wave. An experiment was carried out in the ocean engineering basin of the Korea Research Institute of Ships and Ocean Engineering (KRISO). A series of regular wave tests under various heading conditions were conducted to investigate ship motion responses and wave drift forces. A Rankine panel method based on potential flow was adopted in the numerical analysis, and the direct pressure integration method that integrates second-order pressure on the hull surface was applied to compute wave drift force. Through this study, validation data of wave drift force acting on KVLCC2 was established, and the computation capability of the potential-based numerical method was systematically analyzed.
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spelling doaj.art-19db85e4e5594e03927ac3875087832f2023-12-03T15:11:16ZengMDPI AGJournal of Marine Science and Engineering2077-13122021-01-019213610.3390/jmse9020136Experimental and Numerical Analysis of Wave Drift Force on KVLCC2 Moving in Oblique WavesMin Guk Seo0Yoon Jin Ha1Bo Woo Nam2Yeongyu Kim3Korea Research Institute of Ships and Ocean Engineering, Daejeon 34103, KoreaKorea Research Institute of Ships and Ocean Engineering, Daejeon 34103, KoreaDepartment of Naval Architecture and Ocean Engineering, Seoul National University, Seoul 08826, KoreaKorea Research Institute of Ships and Ocean Engineering, Daejeon 34103, KoreaIn this study, experimental and numerical methods were applied to estimate surge and sway wave drift forces and yaw drift moment acting on KVLCC2, advancing in oblique wave. An experiment was carried out in the ocean engineering basin of the Korea Research Institute of Ships and Ocean Engineering (KRISO). A series of regular wave tests under various heading conditions were conducted to investigate ship motion responses and wave drift forces. A Rankine panel method based on potential flow was adopted in the numerical analysis, and the direct pressure integration method that integrates second-order pressure on the hull surface was applied to compute wave drift force. Through this study, validation data of wave drift force acting on KVLCC2 was established, and the computation capability of the potential-based numerical method was systematically analyzed.https://www.mdpi.com/2077-1312/9/2/136wave drift forceoblique waveKVLCC2model testRankine panel method
spellingShingle Min Guk Seo
Yoon Jin Ha
Bo Woo Nam
Yeongyu Kim
Experimental and Numerical Analysis of Wave Drift Force on KVLCC2 Moving in Oblique Waves
Journal of Marine Science and Engineering
wave drift force
oblique wave
KVLCC2
model test
Rankine panel method
title Experimental and Numerical Analysis of Wave Drift Force on KVLCC2 Moving in Oblique Waves
title_full Experimental and Numerical Analysis of Wave Drift Force on KVLCC2 Moving in Oblique Waves
title_fullStr Experimental and Numerical Analysis of Wave Drift Force on KVLCC2 Moving in Oblique Waves
title_full_unstemmed Experimental and Numerical Analysis of Wave Drift Force on KVLCC2 Moving in Oblique Waves
title_short Experimental and Numerical Analysis of Wave Drift Force on KVLCC2 Moving in Oblique Waves
title_sort experimental and numerical analysis of wave drift force on kvlcc2 moving in oblique waves
topic wave drift force
oblique wave
KVLCC2
model test
Rankine panel method
url https://www.mdpi.com/2077-1312/9/2/136
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AT yoonjinha experimentalandnumericalanalysisofwavedriftforceonkvlcc2movinginobliquewaves
AT bowoonam experimentalandnumericalanalysisofwavedriftforceonkvlcc2movinginobliquewaves
AT yeongyukim experimentalandnumericalanalysisofwavedriftforceonkvlcc2movinginobliquewaves