• 제목/요약/키워드: ocean wind power generator

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수평면 회전식 풍력발전기에 대한 유체역학적 검토 (A Discussion on the Fluid Dynamics of the Horizontally Rotating Power Generator)

  • 이상무;김성근
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2000년도 추계학술대회 논문집
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    • pp.53-56
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    • 2000
  • This paper discusses the horizontally rotaling wind power generator. Quasi static analysis are applied to performance. Translational velocity. which varies on the distance from the rotating wind power generator is effective in speed. In high rotation. the reverse torque reduces the total effective troque. It is recommended to giver efforts to redutorque for the acceptavle performance of the horizontallv rogatting tvpe generator.

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도서지역 적용을 위한 230 kW급 저풍속 중형 풍력발전기의 전자장해석 (Electromagnetic Field Analysis of 230 kW-class Low Wind Speed Medium Wind Turbine for Island-area Application)

  • 최만수;최혜원;이창민;최현준
    • 신재생에너지
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    • 제16권2호
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    • pp.14-19
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    • 2020
  • Recently, a project to build a carbon zero island with no carbon emissions has been carried out by replacing diesel generators with renewable energy sources in island areas where diesel generators supplied local loads as independent systems. To minimize damage to the lives of islanders, low noise wind generators should be installed by adjusting the rated speed. In islands with low loads, wind turbines that are more efficient than medium-sized wind turbines should be installed. In this study, the generator field analysis and characteristics were analyzed to develop 230 kW-class low wind medium-wind turbine technology. The electromagnetic field analysis program used Maxwell. As a result, the cogging torque was reduced, and the initial maneuver wind speed and loss value were lowered. Hence, the output amount was increased with high efficiency.

Assessment of the potential for the design of marine renewable energy systems

  • Duthoit, Maxime;Falzarano, Jeffrey
    • Ocean Systems Engineering
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    • 제8권2호
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    • pp.119-166
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    • 2018
  • The assessment of the potential for the design of marine renewable energy systems is reviewed and the current situation for marine renewable energy is promising. The most studied forms of marine renewable energy are ocean wind energy, ocean wave energy and tidal energy. Wind turbine generators include mostly horizontal axis type and vertical axis type. But also more exotic ideas such as a kite design. Wave energy devices consist of designs converting wave oscillations in electric power via a power take off equipment. Such equipment can take multiple forms to be more efficient. Nevertheless, the technology alone cannot be the only step towards marine renewable energy. Many other steps must be overcome: policy, environment, manpower as well as consumption habits. After reviewing the current conditions of marine renewable energy development, the authors analyzed the key factors for developing a strong marine renewable energy industry and pointed out the huge potential of marine renewable energy.

터빈설치를 위한 한국 연안 해상풍력발전 부존량 평가 (Assessment of Offshore Wind Power Potential for Turbine Installation in Coastal Areas of Korea)

  • 강금석;오남선;고동휘;정신택;황재동
    • 한국해안·해양공학회논문집
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    • 제30권4호
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    • pp.191-199
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    • 2018
  • 본 연구에서는 한국 연안의 해상풍력 발전을 위한 적지를 검토하기 위해 기상청에서 제공하는 20개 지점의 풍속 자료를 수집하고 이를 분석하였다. 관측된 풍속 자료의 분석을 위하여 Rayleigh 모델과 Weibull 모델을 이용하였으며, 풍속 출현빈도에 따라 연간 부존량을 추정하였다. 풍력발전기 모델로는 출력 1.5~5 MW의 7종류를 선정하여 각각의 성능곡선을 이용하였다. 그 결과, 풍속이 7.15 m/s 이상인 지점에서는 Repower-5 MW의 터빈이 높은 에너지 생산이 가능한 것으로 나타났으나 그 이하의 풍속에서는 G128-4.5 MW의 터빈이 유리한 것으로 나타났다. 10 m/s 이상의 풍속 출현율이 높은 마라도, 거제도 및 포항의 경우 REpower사의 5 MW급 해상풍력발전기 설치 시 설비이용률이 56.49%, 50.92%, 50.08%로 높게 나타났다.

Response Analysis of MW-Class Floating Offshore Wind Power System using International Standard IEC61400-3-2

  • Yu, Youngjae;Shin, Hyunkyoung
    • 한국해양공학회지
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    • 제34권6호
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    • pp.454-460
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    • 2020
  • In 2019, the Korean government announced the 3rd Basic Plan for Energy, which included expanding the rate of renewable energy generation by 30-40% by 2040. Hence, offshore wind power generation, which is relatively easy to construct in large areas, should be considered. The East Sea coast of Korea is a sea area where the depth reaches 50 m, which is deeper than the west coast, even though it is only 2.5 km away from the coastline. Therefore, for offshore wind power projects on the East Sea coast, a floating offshore wind power should be considered instead of a fixed one. In this study, a response analysis was performed by applying the analytical conditions of IEC61400-3-2 for the design of floating offshore wind power generation systems. In the newly revised IEC61400-3-2 international standard, design load cases to be considered in floating offshore wind power systems are specified. The upper structure applied to the numerical analysis was a 5-MW-class wind generator developed by the National Renewable Energy Laboratory (NREL), and the marine environment conditions required for the analysis were based on the Ulsan Meteorological Buoy data from the Korea Meteorological Administration. The FAST v8 developed by NREL was used in the coupled analysis. From the simulation, the maximum response of the six degrees-of-freedom motion and the maximum load response of the joint part were compared. Additionally, redundancy was verified under abnormal conditions. The results indicate that the platform has a maximum displacement radius of approximately 40 m under an extreme sea state, and when one mooring line is broken, this distance increased to approximately 565 m. In conclusion, redundancy should be verified to determine the design of floating offshore wind farms or the arrangement of mooring systems.

부유식 가변 피치형 수직축 풍력발전기의 발전효율에 관한 실험 연구 (Experimental Study on Efficiency of Floating Vertical Axis Wind Turbine with Variable-Pitch)

  • 김재희;조효제;황재혁;장민석;이병성
    • 한국해양공학회지
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    • 제32권3호
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    • pp.202-207
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    • 2018
  • This paper presents the efficiency of a floating vertical axis wind turbine with variable-pitch. A model was designed to use the lift force and drag force for blades with various pitch angles. The blade's pitch angle is controlled by the stopper. To validate the efficiency of the wind turbine discussed in this paper, a model test was carried out through a single model efficiency experiment and wave tank experiment. The parameters of the single model efficiency experiment were the wind speed, electronic load, and pitch angle. The wave tank experiment was performed using the most efficient pitch angle from the results of the single model efficiency experiment. According to the results of the wave tank experiment, the surge and pitch motion of a structure slightly affect the efficiency of a wind turbine, but the heave motion has a large effect because the heights of the wind turbine and wind generator are almost the same.

Smart Power Management System for Leisure-ship

  • Park, Do-Young;Oh, Jin-Seok
    • 한국항해항만학회지
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    • 제35권9호
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    • pp.749-753
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    • 2011
  • A leisure ship has a stand-alone type power system, and a generator is in use on this condition. But the generator cannot be operated in condition of leisure activity, ocean measurement and etc, because of environment and noise. Recently, renewable energy system is connected with power system of the leisure-ship for saving energy. The renewable energy system can not supply the stable power to leisure-ship because power generation changes according to weather condition. And most of the leisure ship is operated without methodical power management system. This study's purpose is to develop SPMS(Smart Power Management System) algorithm using the renewable energy (photovoltaic, wind power and etc.). The proposed algorithm is able to supply stable the power according to operation mode. Furthermore, the SPMS manages electric load (sailing and communication equipment, TV, fan, etc.) and reduces operating times of the generator. In this paper, the proposed algorithm is realized and executed by using LabVIEW. As a result, the hour for operating the generator is minimized.

풍력 발전기의 Rotor-Blades 회전체 시스템 공력 해석 (Analysis of Flows around the Rotor-Blades as Rotating Body System of Wind Turbine)

  • 김동진;곽승현;이경호
    • 한국해양공학회지
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    • 제23권5호
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    • pp.25-31
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    • 2009
  • The most important component of wind turbine is rotor blades. The developing method of wind turbine was focused on design of rotor blade. By the way, the design of a rotating body is more decisive process in order to adjust the performance of wind turbine. For instance, the design allows the designer to specify the wind characteristics derived by topographical map. The iterative solver is then used to adjust one of the selected inputs so that the desired rotating performance which is directly related to power generating capacity and efficiency is achieved. Furthermore, in order to save the money for manufacturing the rotor blades and to decrease the maintenance fee of wind power generation plant, while decelerating the cut-in speed of rotor. Therefore, the design and manufacturing of rotating body is understood as a substantial technology of wind power generation plant development. The aiming of this study is building-up the profitable approach to designing of rotating body as a system for the wind power generation plant. The process was conducted in two steps. Firstly, general designing and it’s serial testing of rotating body for voltage measurement. Secondly, the serial test results above were examined with the CFD code. Then, the analysis is made on the basis of amount of electricity generated by rotor-blades and of cut-in speed of generator.

해안지역 주거시설을 위한 전력수요 변동 대응형 하이브리드 발전시스템 도입 효과 예측에 관한 사례연구 (A feasibility study on the hybrid power generation system considering of electricity needs' fluctuation of coastal area's houses)

  • 황광일
    • Journal of Advanced Marine Engineering and Technology
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    • 제37권8호
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    • pp.977-983
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    • 2013
  • 본 연구는 섬 주거시설의 전력부하 변동특성에 적합한 태양광발전설비와 풍력발전설비로 구성된 하이브리드 발전시스템의 발전특성을 예측하고 성능을 평가하는 것을 목적으로, 경상남도 통영시에 소재하는 곤리도를 대상으로 수행한 사례연구 결과이다. 연구 결과, 시각별 전력부하 변동률, 시각별 풍력 발생 변동률, 시각별 일사량 변동률 등이 서로 다르기 때문에, 단순히 전력부하측과 풍력 혹은 태양광발전설비를 1:1로 조합한다면 상호간에 불균형이 발생하여 비효율적임을 알 수 있었다. 또한 부하용량선정방법인 최대부하법과 일일부하법으로 하이브리드 발전시스템의 각 용량을 설정할 경우의 성능을 비교한 결과 두 방법 모두 축전지를 포함한 풍력발전설비만 설치했을 때가 가장 효과적인 것으로 나타났는데 이는 풍력은 태양광과 달리 24시간 지속적으로 발생하기 때문이다.

도르래를 이용한 파력발전기 프로토 타입 개발에 관한 연구 (Development of the Prototype of Wave Energy Converter by a Pulley System)

  • 정현석
    • 한국해양공학회지
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    • 제24권1호
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    • pp.133-139
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    • 2010
  • From the ancient times, there are waves in the ocean. And all the moving body have energy. We have a kind of hope to convert the wave energy into electric one. Finally we can find out a power generator mechanism that mainly use the principle of pulleys. We have made drawings for this and completed the wave energy converter. This wave energy converter consists of several pulleys, rope, generator, buoys and anchors. The distance between an anchor and buoy is changed according to the hight of waves. Several sets of anchors, pulleys and buoys can make the movement of rope, and the ropes wind up a converter axis. In case of 1 meter movement of the buoy, the winding distance will be amplified 2 or 3 times if we use several moving and fixed pulleys. Based on this concept, we developed 2 kind of prototypes. One is for the test in the laboratory and the other is for the field test. Through the two test, we could confirm the usability of this mechanism.