• Title/Summary/Keyword: 연안 파랑 모델

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Motion Analysis of the AWS Wave Energy Device for the Domestic Inshore Environment (국내연안 환경을 고려한 AWS형 파력발전 장치의 움직임 분석)

  • Kim, Jae-Man;Park, Jin-Bae;Choi, Yoon-Ho
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.1334-1335
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    • 2011
  • 본 논문에서는 국내 연안의 파도특성을 고려한 AWS (Archimedes Wave Swing)형 파력발전 장치의 움직임을 분석한다. 파력발전 장치의 크기 및 설치깊이, 파도 주기에 따른 발전장치의 진폭 변화를 알아보며 최대 진폭을 얻을 수 있도록 발전장치를 모델링한다.

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Study on the extraction of ocean parameters using SAR image data (SAR 영상자료률 이용한 해양 파라미터 추출 기법 연구)

  • Kang, Moon-Kyung;Park, Yong-Wook;Lee, Hoon-Yol;Lee, Moon-Jin
    • Proceedings of the KSRS Conference
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    • 2007.03a
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    • pp.198-203
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    • 2007
  • 최근 인공위성 SAR를 이용한 기술은 해풍,파랑,해류 등과 같은 해양에서 발생되는 다양한 현상을 관측하고 연구하는데 펼수적인 기술로 대두되고 있다. CMOD4, CMOD-IFR2 모델은 해상풍의 크기를 구할 수 있으며,wave-SAR 변환 기법과 inter-look cross-spectra 기법은 파랑의 크기,방향과 같은 물리적 값을 추출할 수 있다. 또한 Doppler shift 기법을 적용하여 해류속도를 구할 수 있다. 본 연구에서는 위의 기법들을 종합적으로 적용하여 SOP (SAR Ocean Processor) 프로세서를 개발하였다. 이 프로세서를 한반도 연안 지역에 적용하여 RADARSAT-1 영상자료로부터 해풍,파랑,해류의 물리적 정보를 추출하였으며,이를 현장 관련 자료와 비교하여 신뢰할만한 결과를 얻을 수 있었다.

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Field Observation of Morphological Response to Storm Waves and Sensitivity Analysis of XBeach Model at Beach and Crescentic Bar (폭풍파랑에 따른 해빈과 호형 사주 지형변화 현장 관측 및 XBeach 모델 민감도 분석)

  • Jin, Hyeok;Do, Kideok;Chang, Sungyeol;Kim, In Ho
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.32 no.6
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    • pp.446-457
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    • 2020
  • Crescentic sand bar in the coastal zone of eastern Korea is a common morphological feature and the rhythmic patterns exist constantly except for high wave energy events. However, four consecutive typhoons that directly and indirectly affected the East Sea of Korea from September to October in 2019 impacted the formation of longshore uniform sand bar and overall shoreline retreats (approx. 2 m) although repetitive erosion and accretion patterns exist near the shoreline. Widely used XBeach to predict storm erosions in the beach is utilized to investigate the morphological response to a series of storms and each storm impact (NE-E wave incidence). Several calibration processes for improved XBeach modeling are conducted by recently reported calibration methods and the optimal calibration set obtained is applied to the numerical simulation. Using observed wave, tide, and pre & post-storm bathymetries data with optimal calibration set for XBeach input, XBeach successfully reproduces erosion and accretion patterns near MSL (BSS = 0.77 (Erosion profile), 0.87 (Accretion profile)) and observed the formation of the longshore uniform sandbar. As a result of analysis of simulated total sediment transport vectors and bed level changes at each storm peak Hs, the incident wave direction contributes considerable impact to the behavior of crescentic sandbar. Moreover, not only the wave height but also storm duration affects the magnitude of the sediment transport. However, model results suggest that additional calibration processes are needed to predict the exact crest position of bar and bed level changes across the inner surfzone.

Calibration and Verification of a Hydrodynamic Model in Chunsu Bay and Adjacent Coastal Water (천수만과 인근연안에서 수역학모델의 보정 및 검증)

  • Kyeong Park;Jeong Hwan Oh
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.10 no.3
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    • pp.109-119
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    • 1998
  • A horizontal tow-dimensional version of POM (Princeton Ocean Model) was modified in representing the bottom friction and the open boundary conditions. To simulate the flooding and drying of intertidal flats, a wetting-and-drying scheme was incorporated into the model. The model then was applied to the Chunsu Bay and its adjacent coastal water. Only the water movement due to tides, the dominant forcing in the study area, was considered. This presents the procedure and the results of model calibration and verification for the Chunsu Bay system. The model was calibrated, using the average tidal characteristics in Tide Tables, for the amplitudes and the phases of tidal waves throughout the modeling domain. Calibration results showed that the model gave a good reproduction of tidal waves. The calibrated model was verified using the time-series measurements of surface elevation and current velocity in the summer of 1995. The model reproduced the tides currents very well. calibration and verification results demonstrated that the model is capable of reproducing the tidal dynamics in the Chunsu Bay system.

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Experimental Study of Beach Nourishment Fronting Seawalls (호안 전면에서의 양빈계획 : 수리실험연구)

  • 유철희;로버트딘
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.11 no.2
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    • pp.75-86
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    • 1999
  • 호안전면에서의 양빈의 거동이 연구, 조사되며 모래로 이루어진 해변에서의 양빈과 비교하였다. 조건이 서로 다른 6개의 양빈특성이 연구되며 각 조건에 대하여 반복실험이 수행된다. 실험조건에는 모래해변, 호안을 가진 해변, 해안에 직각인 파랑, 그리고 해안에 비스듬한 파랑을 포함한다. 호안을 가진 해안인 경우, 모래입경의 영향이 연구에 포함된다. 또한 호안을 가진 해안에서 모래가 완전히 물에 잠기는 양빈구역의 양단에서 표사이동율을 각각 해변에 직각인 파랑, 해변과 일정한 각도를 이루는 파랑에 대하여 정량화 하였다. 각기 다른 두 개의 표사이동 관계식이 제시되고 검사된다. 비록 약간의 차이가 있더라도 모델에 의한 표사이동율은 실측한 표사이동율과 비교적 잘 일치함을 보여준다.

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Numerical Study of Wave Prediction Using a Ray Tracing Technique (파향선 추적기법을 이용한 파랑예측에 관한 연구)

  • 조원철
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.8 no.3
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    • pp.236-245
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    • 1996
  • A wave prediction model is used to estimate the wave spectrum at Ulsan Bay. The Wave model includes the refraction of wave rays according to water depth changes in transient and shallow waters. The calculation of wave refraction is performed from three wave directions : east, southeast and south. Three target locations are selected and the wave spectrum at each location is computed for several uniform wind speeds and directions. The computation results of wave spectrum are compared with PNJ(Pierson, Newmann and James) nomogram and Bretschneider nomogram as well. The model could be used in selection of proper harbor site and in construction of coastal facilities, providing fundamental data in design.

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Establishment of a Dynamic Factor Prediction Module for Risk Assessment in Coastal Activity Sites (연안활동장소 위험도 평가를 위한 동적요소 예측 모듈 구축)

  • Young Jae Yoo;Dong Soo Jeon;Won Kyung Park
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.35 no.5
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    • pp.95-101
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    • 2023
  • Recent persistent coastal developments have expanded recreational areas and enhanced accessibility. However, this growth has also led to a rise in safety incidents. These accident factors can be divided into human-made and natural types. The latter is comprised of dynamic factors like waves, tides, sea fogs, and winds. While institutions like the Korea Meteorological Administration and the Korea Hydrographic and Oceanographic Agency already offer data on these dynamic factors, the resolution is often insufficient for a precise assessment of localized risks. In this study, to overcome these limitations, we utilized the dynamic information from existing open systems to construct a high-resolution numerical simulation. Through this, we developed an automated module to predict dynamic factors in localized coastal activity areas. Particularly during the module's construction, we compared and reviewed the numerical prediction results for waves with observed wave heights.

항내 정온계산 위한 BOUSS-2D 모형의 반사특성 검토

  • Ha, Chang-Sik;Kim, Tak-Gyeom;Kim, Jong-Hun;Yu, Ha-Sang
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2018.05a
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    • pp.65-66
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    • 2018
  • 국내 항만의 건설 및 확장 보수를 위한 설계 단계에서의 평면배치 검토시 항내측으로 내습하는 파랑변형특성에 대한 정밀한 평가는 필수적이다. 이에 따라 많은 수학적 모델들이 연안역과 항만에서의 파랑전파와 변형에 대해 개발되어 왔다. 특히 항내정온도의 해석은 항만 사용성 측면에서 매우 중요하며 실제 해상의 파랑상태와 유사한 불규칙파로의 해석이 요구되어 지고 있다. 항내정온도 해석에 있어서 항내파랑장 형성에 크게 영향을 미치는 구조물의 반사율을 효과적으로 적용하는 것은 매우 중요하다. 하지만, 구조물의 반사율은 이론계산이 어렵고, 일반적으로는 모형실험 혹은 현지관측에 의해 추정된다. 따라서, 일반적인 경우 비용 및 시간상의 제약으로 인해 평면 파랑모형으로 정온도 해석시 반사율의 적용은 구조형식별로 연구자들에 의해 개략 제시된 반사율을 적용하고 있다. 특히, 다방향 불규칙파의 적용시에 경계조건으로는 다방향 불규칙파를 효과적으로 제어할 수 있는 부분반사 경계면과 계산영역 밖으로 나가는 파랑에 대해서 인공적인 흡수층 또는 감쇠층(artificial damping layer)을 설정하여 반사를 제어하는 기법을 많이 적용하고 있다. 이때 항만구조물의 부분반사는 파랑제원에 따른 damping layer의 parameter의 조정에 의해 구조물의 구조형식별 반사율을 적절히 재현할 필요성이 있다. 본 연구에서는 불규칙파를 대상으로 damping layer의 parameter(무차원 감쇠계수, 감쇠층의 두께)등의 변화에 따른 반사율의 변화특성을 고찰하고, 향후 부분반사 경계면으로 damping layer가 적용되는 평면 파랑모형의 정온도 해석시 부분반사의 적용에 대한 기초자료를 제공하고자 한다.

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Regular Wave Generation Using Three Different Numerical Models under Perfect Reflection Condition and Validation with Experimental Data (세 가지 수치모델을 이용한 완전반사 조건에서의 규칙파 조파 및 수리실험 검증)

  • Oh, Sang-Ho;Ahn, Sukjin
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.31 no.4
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    • pp.199-208
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    • 2019
  • Regular waves were generated in a wave flume under perfect reflection condition to evaluate performance of three CFD models of CADMAS-SURF, olaFlow, and KIOSTFOAM. The experiments and numerical simulations were carried out for three different conditions of non-breaking, breaking of standing waves, and breaking of incident waves. Among the three CFD models, KIOSTFOAM showed best performance in reproducing the experimental results. Although the run time was reduced by using CADMAS-SURF, its computational accuracy was worse than KIOSTFOAM. olaFlow was the fastest model, but active wave absorption at the wave generation boundary was not satisfactory. In addition, the model excessively dissipated wave energy when wave breaking occurred.

Geoacoustic Model at the SSDP-105 Long-core Site of the Ulsan Coastal Area, the East Sea (동해 울산 연안해역 SSDP-105 심부코어 지점의 지음향 모델)

  • Ryang, Woo-Hun;Lee, Gwang-Soo;Hahn, Jooyoung
    • Journal of the Korean earth science society
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    • v.39 no.2
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    • pp.154-163
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    • 2018
  • Geoacoustic model comprises physical and acoustic properties of submarine bottom layers influencing sound transmission through sea water and underwater. This study suggested for the first time that we made a geoacoustic model of long-coring bottom layers at the SSDP-105 drilling site of the Ulsan coastal area, which is located in the southwestern inner shelf of the East Sea. The geoacoustic model of 52 m depth below seafloor with three-layer geoacoustic units was reconstructed in the coastal sedimentary strata at 79 m in water depth. The geoacoustic model was based on the data of a deep-drilled sediment core of SSDP-105 and sparker seismic profiles in the study area. For actual modeling, the geoacoustic property values of the models were compensated to in situ depth values below the sea floor using the Hamilton modeling method. We suggest that the geoacoustic model be used for geoacoustic and underwater acoustic experiments of mid- and low-frequency reflecting on the deep bottom layers in the Ulsan coastal area of the East Sea.