• 제목/요약/키워드: wind wave

검색결과 869건 처리시간 0.041초

Estimation of Design Wave Height for the Waters around the Korean Peninsula

  • Lee, Dong-Young;Jun, Ki-Cheon
    • Ocean Science Journal
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    • 제41권4호
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    • pp.245-254
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    • 2006
  • Long term wave climate of both extreme wave and operational wave height is essential for planning and designing coastal structures. Since the field wave data for the waters around Korean peninsula is not enough to provide reliable wave statistics, the wave climate information has been generated by means of long-term wave hindcasting using available meteorological data. Basic data base of hindcasted wave parameters such as significant wave height, peak period and direction has been established continuously for the period of 25 years starting from 1979 and for major 106 typhoons for the past 53 years since 1951 for each grid point of the North East Asia Regional Seas with grid size of 18 km. Wind field reanalyzed by European Center for Midrange Weather Forecasts (ECMWF) was used for the simulation of waves for the extra-tropical storms, while wind field calculated by typhoon wind model with typhoon parameters carefully analyzed using most of the available data was used for the simulation of typhoon waves. Design wave heights for the return period of 10, 20, 30, 50 and 100 years for 16 directions at each grid point have been estimated by means of extreme wave analysis using the wave simulation data. As in conventional methodsi of design criteria estimation, it is assumed that the climate is stationary and the statistics and extreme analysis using the long-term hindcasting data are used in the statistical prediction for the future. The method of extreme statistical analysis in handling the extreme vents like typhoon Maemi in 2003 was evaluated for more stable results of design wave height estimation for the return periods of 30-50 years for the cost effective construction of coastal structures.

한국남해만에서의 설계파의 결정 (Determination of Design Waves along the South Coast of Korea)

  • 김태인;최한규
    • 물과 미래
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    • 제21권4호
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    • pp.389-397
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    • 1988
  • 남해 연안 지상측정소의 과거풍속자료와 돌풍 기록으로 부터 과거의 피해 자료를 추산(Hindcasting)하고 이로부터 얻어진 지역별 피해별 연간 최대피해의 극치 계열로 부터 확율분석을 통하여 송해 설계치를 결정하는 방법이 제안되엇다. 남해 연안에 내재하는 큰 파급은 돌풍과 춘하절 계절풍에 의해 생성되며 지역별 파향별로 상당한 차이를 보인다. 재현기간이 100년인 설계 유의파의 파고는 송해에서 4.6m~ 8.8m ,조기는 8.2sec~ 12.9sec의 범위를 보인다. 남해\ulcorner\ulcorner에서 풍속 $U_1$ >15m/s의 강풍에 대하여 일반적으로 해상풍속(Uw)은 \ulcorner\ulcorner 지상관측소 풍속($U_1$)의 0.8~0.9배 정도를 나타낸다. 남해 \ulcorner\ulcorner의 지상관측소에서 지속기간의 평균풍속($U_1$)은 2$U_{10}$)의 0.7~0.9배의 값을 가지면서 역지수 함수적으로 감소한다.

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심해 풍파의 3파 상호작용에 대한 실험실 실험 (Laboratory Experiments for Triad Interactions of Deep Water Wind Waves)

  • 서경덕;오상호;;안경모;박광순
    • 한국해안해양공학회지
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    • 제12권1호
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    • pp.39-52
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    • 2000
  • 3파 상호작용은 천수파 또는 유한 수심 풍파의 경우에만 중요한 것으로 알려져 왔다. 파랑 성분간의 에너지 전달에 의한 풍파의 성장 관점에서 볼 때 심해에서 3파 상호작용은 4파 상호작용에 비해 별로 중요하지 않다. 그러나, 심해에서도, 특히 풍파 성장의 초기 단계에서는, 3파 상호작용이 중요할 수 있는데, 이는 3파 상호작용이 쇄파에 결정적인 영향을 미치는 파형경사, 수면 위에서의 공기 흐름의 항력, 선박의 항해 등과 밀접한 관계를 가지고 있기 때문이다. 본 연구에서는 일련의 실험실 실험 결과를 제시하고, 이에 대한 bispectrum 분석을 통하여 심해 풍파의 3파 상호작용을 고찰한다. 스펙트럼 첨두 주파수에서의 bicoherence와 파형경사가 거의 정비례하는 것으로 나타나는데, 이는 파봉이 뽀족하고 파곡이 밋밋한, 경사가 큰 파가 3파 상호작용의 결과임을 나타낸다. Bicoherence 및 파형경사 모두가 파랑 성장의 초기 단계에서는 파령에 따라 증가하다가 파랑이 발달함에 따라 다시 작아진다. 파랑 성장의 초기 단계에서 3파 상호작용에 의하여 발달된 스펙트럽 2차 첨두의 에너지가 그 이후에는 4파 상호작용에 의해 주변의 주파수들로 재분배되는 것으로 추측된다.

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재해통계기반 서해 연안지역의 풍랑피해예측함수 개발 (Development for the function of Wind wave Damage Estimation at the Western Coastal Zone based on Disaster Statistics)

  • 추태호;곽길신;안시형;양다운;손종근
    • 한국산학기술학회논문지
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    • 제18권2호
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    • pp.14-22
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    • 2017
  • 전 세계적으로 지구온난화에 의한 이상기후현상으로 자연재해의 발생빈도와 규모가 증가하고 있는 추세이다. 태풍, 지진, 홍수, 폭우, 가뭄, 폭염, 풍랑, 쓰나미 등과 같은 다양한 자연재해는 현재까지 인간생활에 피해를 주고 있다. 특히, 일본의 대지진, 미국의 허리케인 카트리나, 한국의 태풍 매미 등 세계적으로 자연재해에 의한 피해는 막대하다. 현 단계에서 자연 재해로 인한 피해규모를 정확히 예측하고, 그에 대처하는 것은어려운 실정이다. 그러나 재해대응 차원에서 피해 규모를 예측 할 수 있다면 신속하게 대응하여 피해를 저감할 수 있다고 판단된다. 따라서, 본 연구에서는 여러 가지 자연재해 중 해풍과 파랑에 의해 발생하는 풍랑에 관한 피해예측함수를 개발하였다. 서해 연안지역을 대상으로 국민안전처에서 발간하는 재해연 보('91~'14)의 풍랑 및 태풍피해 이력을 수집하였으며, 물가상승률을 반영하기 위해 2014년 기준으로 피해액을 환산하였다. 또한, 풍랑 및 태풍피해가 발생했을 때 기상청 및 국립해양조사원 홈페이지에서 파고, 풍속, 조위, 파향, 파주기 등의 자료를 수집하였다. 최종적으로, 연안의 지역특성을 반영하여 서해안의 9개 지역의 풍랑 피해예측함수를 개발하였다.

Semi-analytical numerical approach for the structural dynamic response analysis of spar floating substructure for offshore wind turbine

  • Cho, Jin-Rae;Kim, Bo-Sung;Choi, Eun-Ho;Lee, Shi-Bok;Lim, O-Kaung
    • Structural Engineering and Mechanics
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    • 제52권3호
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    • pp.633-646
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    • 2014
  • A semi-analytical numerical approach for the effective structural dynamic response analysis of spar floating substructure for offshore wind turbine subject to wave-induced excitation is introduced in this paper. The wave-induced rigid body motions at the center of mass are analytically solved using the dynamic equations of rigid ship motion. After that, the flexible structural dynamic responses of spar floating substructure for offshore wind turbine are numerically analyzed by letting the analytically derived rigid body motions be the external dynamic loading. Restricted to one-dimensional sinusoidal wave excitation at sea state 3, pitch and heave motions are considered. Through the numerical experiments, the time responses of heave and pitch motions are solved and the wave-induced dynamic displacement and effective stress of flexible floating substructure are investigated. The hydrodynamic interaction between wave and structure is modeled by means of added mass and wave damping, and its modeling accuracy is verified from the comparison of natural frequencies obtained by experiment with a 1/100 scale model.

Vibration characteristics of offshore wind turbine tower with gravity-based foundation under wave excitation

  • Nguyen, Cong-Uy;Lee, So-Young;Huynh, Thanh-Canh;Kim, Heon-Tae;Kim, Jeong-Tae
    • Smart Structures and Systems
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    • 제23권5호
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    • pp.405-420
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    • 2019
  • In this study, vibration characteristics of offshore wind turbine tower (WTT) with gravity-based foundation (GBF) are identified from dynamic responses under wave-induced excitations. The following approaches are implemented to achieve the objective. Firstly, the operational modal analysis methods such as frequency domain decomposition (FDD) and stochastic subspace identification (SSI) are selected to estimate modal parameters from output-only dynamic responses. Secondly, a GBF WTT model composed of superstructure, substructure and foundation is simulated as a case study by using a structural analysis program, MIDAS FEA. Thirdly, wave pressures acting on the WTT structure are established by nonlinear regular waves which are simulated from a computational fluid software, Flow 3D. Wave-induced acceleration responses of the target structure are analyzed by applying the simulated wave pressures to the GBF WTT model. Finally, modal parameters such as natural frequencies and mode shapes are estimated from the output-only acceleration responses and compared with the results from free vibration analysis. The effect of wave height and period on modal parameter extraction is also investigated for the mode identification of the GBF WTT.

Validation of a 750 kW semi-submersible floating offshore wind turbine numerical model with model test data, part I: Model-I

  • Pham, Thanh Dam;Shin, Hyunkyoung
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제11권2호
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    • pp.980-992
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    • 2019
  • This paper describes a model test and numerical simulation of a 750-kW-semi-submersible platform wind turbine under several wind and wave conditions for validation of the numerical simulation model. The semi-submersible platform was designed to support the 750-kW-wind turbine class and operate at a water depth of 50 m. The model tests were performed to estimate the performance characteristics of the wind turbine system in the wide tank of the University of Ulsan. Motions and loads of the wind turbine system under the wind and wave conditions were measured and analyzed. The NREL-FAST code was used to simulate the wind turbine system, and the results were compared with those of the test model. The results demonstrate that the numerical simulation captures noticeably the fully coupled floating wind turbine dynamic responses. Also, the model shows a good stability and small responses during waves, wind, and operation of the 750-kW-floating offshore wind turbine.

부유식 풍력-파력발전 플랫폼과 탑재된 파력발전기와의 단방향 연성 운동 해석 (One-way Coupled Response Analysis between Floating Wind-Wave Hybrid Platform and Wave Energy Converters)

  • 이혜빈;배윤혁;조일형
    • 한국해양공학회지
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    • 제30권2호
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    • pp.84-90
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    • 2016
  • In this study, a six degree-of-freedom motion analysis of a wind-wave hybrid platform equipped with numerous wave energy converters (WECs) was carried out. To examine the effect of the WECs on the platform, an analysis of one-way coupling was carried out, which only considered the power take-off (PTO) damping of the static WECs on the platform. The equation of motion of a floating platform with mooring lines in the time domain was established, and the responses of the one-way coupled platform were then compared with the case of a platform without any coupling effects from the WECs. The hydrodynamic coefficients and wave exciting forces were obtained from the 3D diffraction/radiation pre-processor code WAMIT based on the boundary element method. Then, an analysis of the dynamic responses of the floating platform with or without the WEC effect in the time domain was carried out. All of the dynamics of a floating platform with multiple wind turbines were obtained by coupling FAST and CHARM3D in the time domain, which was further extended to include additional coupled dynamics for multiple turbines. The analysis showed that the PTO damping effect on platform motions was negligible, but coupled effects between multiple WECs and the platform may differentiate the heave, roll, and pitch platform motions from the one without any effects induced by WECs.

Development of Wind Induced Wave Predict Using Revisited Methods

  • Choi, Byoung-Yeol;Jo, Hyo-Jae;Lee, Kang-Ho;Byoun, Dong-Ha
    • Journal of Advanced Research in Ocean Engineering
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    • 제4권3호
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    • pp.124-134
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    • 2018
  • In this study, when the stability of the structure against the ocean wave is considered for designing the offshore structures in the Pacific, Indian ocean and Atlantic regions where the cyclone is largely generated, the ocean wave caused by the cyclone as well as the storm surge which called wind induced wave shall be predicted accurately for the purpose of judgment. The predicted wind induced wave was evaluated by comparing the outcome results the model test of Nobuhiro Matsunaga (1996) and Conventional Experiment forms such as Jonswap spectral forms(Carter, 1982), Simplified Donelan / Jonswap forms(Wilson 1965), Donelan spectral forms(Donelan 1980), Revised SPM forms(Schafer Lake 2005, 2007, 2008), SPM forms(CERC 1977), the CEM forms(Kazeminezhad et al., 2005), SMB forms(Sverdrup Munk and Bretschneider 1947,1954, 1970), and Revised Wilson forms(Wilson 1965, Goda 2003). Most of these conventional experiment forms confirmed a good match when the fetch length is less than 10 km. However, normal cyclone fetch length is more than 100km, With this fetch length, the comparison result is 10.4% of deviation when used Jonswap spectral forms(Carter, 1982) but the deviation of the other forms is around 74% due to boundary limit of fetch and wind duration. Therefore, in this study, we proposed the revised forms after comparing these results with the model results. We confirmed that the deviation range is around 10% based on revisited experiment forms. Since the model test was carried out in the small water tank, the scale up factor was applied to the mode test results in order to obtain similar results to the actual environment from revisited forms.