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    해운대 해역의 파랑 및 흐름 분석 = Analysis of Wave and Current in Haeundae Coastal Waters

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    https://www.riss.kr/link?id=A101914082

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    To prevent the beach erosion and to support the beach restoration project in Haeundae, the Korean government initiated R&D project, the development of coastal erosion control technology since 2013. As a part of this project, waves and currents have been observed by AWACs in the nearshore and offshore of the Haeundae beach continuously for more than two years, to understand the processes of coastal waters and sediment transport in Haeundae. The variations of residual current and wave were estimated analysing two-year-long AWAC data measured at the mean water depth of 22 m and other short term data obtained near the surf zone of the Haeundae beach, respectively, during summer and winter. IOS T_TIDE and the moving average method for the current data over a fortnightly period (MSf) were applied for estimating the speed and direction of wave-induced current and residual current. A numerical simulation using a wave and current coupled model (ROMS-SWAN) considering wave-tide interaction in Haeundae coastal waters was also conducted for determining the wave-induced current during summer and winter seasonal swell waves (Hs : 2.5 m, Tp: 12 s), for better understanding of the coastal process near the beach. By comparing the measured data and simulated result, we found that cross-shore current during summer season is mainly caused by the eddy produced by the wave-induced current near the beach, which in turn, is generated by the strong waves coming from the S and SSW directions. During other seasons, longshore wave-induced current is produced by the swell waves coming from the E and ESE directions. The wave-induced current also generates longshore current heading west toward Dong-Back Island, west end of the beach, during all the seasons and eddy current toward Mipo-Port, east end of the beach, in summer which is well matched with the estimated residual current. In this study, we especially show the circulation patterns derived from nearshore wave-induced current and offshore residual current causing beach erosion and sediment transport in Haeundae coastal waters.
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    To prevent the beach erosion and to support the beach restoration project in Haeundae, the Korean government initiated R&D project, the development of coastal erosion control technology since 2013. As a part of this project, waves and currents have be...

    To prevent the beach erosion and to support the beach restoration project in Haeundae, the Korean government initiated R&D project, the development of coastal erosion control technology since 2013. As a part of this project, waves and currents have been observed by AWACs in the nearshore and offshore of the Haeundae beach continuously for more than two years, to understand the processes of coastal waters and sediment transport in Haeundae. The variations of residual current and wave were estimated analysing two-year-long AWAC data measured at the mean water depth of 22 m and other short term data obtained near the surf zone of the Haeundae beach, respectively, during summer and winter. IOS T_TIDE and the moving average method for the current data over a fortnightly period (MSf) were applied for estimating the speed and direction of wave-induced current and residual current. A numerical simulation using a wave and current coupled model (ROMS-SWAN) considering wave-tide interaction in Haeundae coastal waters was also conducted for determining the wave-induced current during summer and winter seasonal swell waves (Hs : 2.5 m, Tp: 12 s), for better understanding of the coastal process near the beach. By comparing the measured data and simulated result, we found that cross-shore current during summer season is mainly caused by the eddy produced by the wave-induced current near the beach, which in turn, is generated by the strong waves coming from the S and SSW directions. During other seasons, longshore wave-induced current is produced by the swell waves coming from the E and ESE directions. The wave-induced current also generates longshore current heading west toward Dong-Back Island, west end of the beach, during all the seasons and eddy current toward Mipo-Port, east end of the beach, in summer which is well matched with the estimated residual current. In this study, we especially show the circulation patterns derived from nearshore wave-induced current and offshore residual current causing beach erosion and sediment transport in Haeundae coastal waters.

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    목차 (Table of Contents)

    • 1. 서 론
    • 2. 본 론
    • 3. 결 론
    • 1. 서 론
    • 2. 본 론
    • 3. 결 론
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    참고문헌 (Reference)

    1 임학수, "해운대 파랑과 흐름 변동특성 분석" (사)한국연안방재학회 2 (2): 119-130, 2015

    2 김창식, "경기만 조석 잔치류 산정 및 변동성" 한국해안,해양공학회 22 (22): 353-360, 2010

    3 Lim, H. S., "Wave-induced current simulated by wave-current coupled model in Haeundae" 75 : 1392-1396, 2016

    4 Lim, H. S., "Variations of observed wave and current in Haeundae coastal waters" 65-67, 2015

    5 Lim, H. S., "Variability of residual currents and waves in Haeundae using long-term observed AWAC data" 72 : 166-172, 2014

    6 Busan Haeundae, "Report of detailed design on Haeundae beach coastal development project" 2011

    7 Busan Haeundae, "Report of basic planning services and feasibility study on Haeundae beach coastal development project" 2006

    8 Busan Haeundae, "Report of basic design on Haeundae beach coastal development project" 2009

    9 Lim, H. S., "Numerical simulation of wave-induced current considering wave-tide interaction" Konkuk University 2015

    10 Pawlowicz, R., "Classical tidal harmonic analysis including error estimates in MATLAB using T_TIDE" 28 : 929-937, 2002

    1 임학수, "해운대 파랑과 흐름 변동특성 분석" (사)한국연안방재학회 2 (2): 119-130, 2015

    2 김창식, "경기만 조석 잔치류 산정 및 변동성" 한국해안,해양공학회 22 (22): 353-360, 2010

    3 Lim, H. S., "Wave-induced current simulated by wave-current coupled model in Haeundae" 75 : 1392-1396, 2016

    4 Lim, H. S., "Variations of observed wave and current in Haeundae coastal waters" 65-67, 2015

    5 Lim, H. S., "Variability of residual currents and waves in Haeundae using long-term observed AWAC data" 72 : 166-172, 2014

    6 Busan Haeundae, "Report of detailed design on Haeundae beach coastal development project" 2011

    7 Busan Haeundae, "Report of basic planning services and feasibility study on Haeundae beach coastal development project" 2006

    8 Busan Haeundae, "Report of basic design on Haeundae beach coastal development project" 2009

    9 Lim, H. S., "Numerical simulation of wave-induced current considering wave-tide interaction" Konkuk University 2015

    10 Pawlowicz, R., "Classical tidal harmonic analysis including error estimates in MATLAB using T_TIDE" 28 : 929-937, 2002

    11 최준우, "Boussinesq 방정식 모형을 이용한 해운대 이안류 수치모의" 한국해안,해양공학회 23 (23): 276-284, 2011

    12 KIOST, "Annual report of the development of coastal erosion control technology" 2015

    13 KIOST, "Annual report of the development of coastal erosion control technology" 2016

    14 KIOST, "Annual report of coastal wave observation, analysis and long-term calculation" 2011

    15 Wei, G., "A fully non-linear Boussinesq model for surface waves: I. Highly non-linear, unsteady waves" 294 : 71-92, 1995

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2022 평가 재인증평가 신청대상 (재인증)
    2019-04-24 학술지명변경 외국어명 : JCDP -> Journal of Coastal Disaster Prevention KCI등재
    2019-01-01 등재 등재학술지 선정 (계속평가) KCI등재
    2017-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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