• Title/Summary/Keyword: Onshore wind power

검색결과 53건 처리시간 0.151초

국가바람지도에 의한 풍력자원 잠재량 산출방법 (Estimation Method of Wind Resource Potential Using a National Wind Map)

  • 김현구;장문석;김은일;이화운;이순환;김동혁
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2008년도 추계학술대회 논문집
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    • pp.332-333
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    • 2008
  • This paper presents an estimation method of national wind resource potential using a national and GIS(Geographical Information System). The wind resource potential is classified into theoretical, geographical and technical potentials and each category narrows down the previous definition by excluding impossible area to be developed as a wind farm using GIS datasets for onshore and offshore. As a basic unit of wind energy potential at a certain area, API(Average Power Intercepted) is calculated from WPD(Wind Power Density) given by a national wind map which is established by numerical wind simulation, so that a logical and relatively accurate potential estimation is possible comparing with other methods based on a field measurement interpolation which is inevitable to avoid critical assumptions.

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이종 풍력 터빈의 감시 제어를 위한 통신 시스템 구조 (A New Structure of Communication System for Monitoring and Control of Heterogeneous Wind Tubines)

  • 김태형;황태호;함경선
    • 정보통신설비학회논문지
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    • 제10권1호
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    • pp.40-45
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    • 2011
  • As increasing the importance of renewable energy recently, the scale of a wind power plant is increasing to the number of GW scale and specially, it is trend to move from onshore to offshore to use the higher quantity and quality of wind. Consequently to meet the trend, it is largely considered the importance of communication protocol to control and monitor remotely. But, because the communication protocol between the control center and a wind turbine has been independently developed by each wind turbine vendor, it is absence of the compatibility and extensibility when the heterogeneous wind turbines are installed in the wind farm. The IEC 61400-25 is the specifying standard for these problems in Europe. In this paper, we will show the state of these problems and present a new structure of communication based on the IEC 61400-25 to get the compatibility and extensibility between a control center and wind turbines.

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해상풍력발전기 모노파일 기초공사용 설치시스템 구조 안전성 (Structural Safety in Installation System for Monopile Basic Construction of Offshore Wind Power Generators)

  • 차태형;정원지;이현준
    • 한국기계가공학회지
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    • 제21권2호
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    • pp.31-38
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    • 2022
  • Recently, the development of offshore wind farms based on past technical experiences from onshore wind turbine installations has become a worldwide issue. This study investigated the technical issues related to offshore wind farms and large-diameter monopiles from an economic perspective. In particular, the monopile foundation system (MFS), which is the most important part of the proposed fast construction system, is applied for the first time in Korea, and structural verification is essential because it supports large-diameter monopiles and is in charge of excavation. Therefore, in this study, a rapid construction system for large offshore wind power generators was introduced, and stability verification was performed through the structural analysis of the MFS.

풍력에너지의 환경친화적 이용 (Sustainable use of wind energy)

  • 이영희
    • 기술사
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    • 제44권2호
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    • pp.46-50
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    • 2011
  • Wind energy, as an alternative to fossil fuels, is plentiful, renewable, widely distributed, clean, and produces no greenhouse gas emissions during operation. However, the construction of wind farms is not universally welcomed because of their visual impact, competing land use, comprising human health impacts, building and crop damage, loss of amenities and ecological impact, impact on wildlife, danger to birds, safety hazard, aesthetics and noise. Offshore wind power, in particular, offers a huge potential to generate clean energy. However, the envisaged massive expansion of wind farms in oceans is already causing severe environmental conflicts. Wind farms cause further harm to already threatened oceans. Wind power has negligible fuel costs, but a high capital cost. The expansion of climate-friendly wind energy use both onshore and offshore can only be successful it the legal and organizational conditions undergo some clear improvements.

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해상풍력 실증 단지 육지 연계시 계통 영향 평가를 위한 안정도 해석에 관한 연구 (Study on Stability Analysis for Systematic Impact Assessment at the Cooperation of Land in Offshore Wind Power Generation Demonstration Complex)

  • 박상호;김건중;한상욱
    • 전기학회논문지P
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    • 제66권4호
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    • pp.151-157
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    • 2017
  • In this paper, it is the result of analysis of the stability by power system analysis about the influence on the power system when the southwest - offshore wind power demonstration complex is constructed to 60MW and it is linked with the onshore power system. Considering the position of the wind turbine actually installed and the length of the cooperating line, we modeled the wind generators, offshore substation and the turbine step-up transformer. Changes of voltage when internal and external faults occurred is analyzed and the reactive power demand according to the amount of electricity generation is derived. And also phase angle stability and frequency is observed through a transient analysis. This paper clarify that there is no problem in the system when only offshore wind power is linked with the grid and try to present the reactive power amount necessary for maintaining the voltage of the point of cooperation appropriately.

2MW급 직접구동형 풍력발전기의 풍황 민감도 및 토크모드 스위칭 성능 해석 (A Sensitivity and Performance Analysis for Torque Mode Switching on 2MW Direct Drive Wind Turbine Generator)

  • 노주현
    • 전기학회논문지
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    • 제63권10호
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    • pp.1455-1460
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    • 2014
  • Wind turbine generators were designed on general regulations of wind condition. At real situations, it could be different from the design conditions. There are many control methods and definitions of transient region, because an efficient wind turbine generator control logic is the important matter in generator performance and annual energy production at real conditions. In this document, the power generation sensitivity for wind speed and turbulence intensities was defined to know the sensitive transient region. Wind conditions are applied for the ranges of 7~10m/s mean wind speed and 14~20% turbulence intensity. The sensibility of HR-D86 wind generator was increased in transient region(8~10m/s) on power curve diagram through a torque control to a pitch control. And then GH-bladed simulations was performed for performance analysis of the torque mode switching in transient region on 2MW direct drive wind generator(HR-D86) which is designed IEC class II for onshore. Through the sensitivity and performance analysis, the sensitivity for real wind condition could be the performance index for an wind generator. And the torque mode switching in transient region can increase the mean power generation on HR-D86 wind turbine generator.

Vertical axis wind turbine types, efficiencies, and structural stability - A Review

  • Rehman, Shafiqur;Rafique, Muhammad M.;Alam, Md. Mahbub;Alhems, Luai M.
    • Wind and Structures
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    • 제29권1호
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    • pp.15-32
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    • 2019
  • Much advancement has been made in wind power due to modern technological developments. The wind energy technology is the world's fastest-growing energy option. More power can be generated from wind energy by the use of new design and techniques of wind energy machines. The geographical areas with suitable wind speed are more favorable and preferred for wind power deployment over other sources of energy generation. Today's wind turbines are mainly the horizontal axis wind turbines (HAWTs) and vertical axis wind turbines (VAWTs). HAWTs are commercially available in various sizes starting from a few kilowatts to multi-megawatts and are suitable for almost all applications, including both onshore and offshore deployment. On the other hand, VAWTs finds their places in small and residential wind applications. The objective of the present work is to review the technological development, available sizes, efficiencies, structural types, and structural stability of VAWTs. Structural stability and efficiencies of the VAWTS are found to be dependent on the structural shape and size.

CFD를 활용한 6 MW 해상풍력발전단지의 풍력터빈 이격거리에 따른 공기역학적 출력 변화연구 (CFD Study on Aerodynamic Power Output of 6 MW Offshore Wind Farm According to the Wind Turbine Separation Distance)

  • 최낙준;남상현;정종현;김경천
    • Journal of Advanced Marine Engineering and Technology
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    • 제35권8호
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    • pp.1063-1069
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    • 2011
  • 본 논문은 2 MW급 풍력터빈 3기로 구성된 6 MW 해상풍력발전단지의 풍력터빈 이격거리에 따른 공기역학적 출력 변화를 전산유동해석을 활용하여 연구한 것이다. 육상 뿐만 아니라 해상풍력발전단지에 있어서 레이아웃 설계는 풍력발전단지 초기 투자비, 년간 발전량 및 유지보수비에 영향을 끼치는 핵심 인자이다. 각 풍력터빈 로터에 대해서 모멘텀 소스를 가지는 액츄에이터 디스크가 아닌 완전한 3-D 모델에 대해서 전산유동해석 기법을 적용하여 연구하였으며 이는 기술적으로 큰 의미를 가진다. 본 논문의 연구결과는 향후 해상풍력발전단지 레이아웃 설계에 유용하게 적용될 수 있을 것이다.

해상 풍력 타워의 모노파일 기초에 대한 다층 지반 해석 (Analysis of the Multi-layered Soil on Monopile Foundation of Offshore Wind Turbine)

  • 김남형;고명진
    • 한국항해항만학회지
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    • 제37권6호
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    • pp.655-662
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    • 2013
  • 최근 화석 연료의 사용에 따른 문제들로 인해 다양한 그린 에너지들이 주목 받고 있다. 그린 에너지의 한 종류로써 풍력 발전의 원동력인 바람은 육상에서 보다 해상에서 양질의 값이 관측된다. 또한, 부지확보, 소음, 전자파와 같은 육상 풍력 발전의 문제점을 해결할 대안으로써, 또한 더 효율적인 풍력 발전을 위해 해상 풍력 발전의 개발이 주목받고 있다. 이에 따라 해상 풍력에 대한 많은 연구들이 수행되고 있다. 풍력 타워가 해상으로 진출함에 따라 해상 풍력 타워는 점차 거대해지고 있다. 따라서 풍력과 파력을 견뎌내기 위한 안정성이 요구되고 있다. 본 연구에서는 p-y 관계를 이용해 다층 지반의 기초에 작용하는 외력을 계산하였다.

새만금 가력도 풍력발전단지에 대한 연간발전량 예측 및 검증 (Prediction and Validation of Annual Energy Production of Garyeok-do Wind Farm in Saemangeum Area)

  • 김형원;송원;백인수
    • 풍력에너지저널
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    • 제9권4호
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    • pp.32-39
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    • 2018
  • In this study, the annual power production of a wind farm according to obstacles and wind data was predicted for the Garyeok-do wind farm in the Saemangeum area. The Saemangeum Garyeok-do wind farm was built in December 2014 by the Korea Rural Community Corporation. Currently, two 1.5 MW wind turbines manufactured by Hyundai Heavy Industries are installed and operated. Automatic weather station data from 2015 to 2017 was used as wind data to predict the annual power production of the wind farm for three consecutive years. For prediction, a commercial computational fluid dynamics tool known to be suitable for wind energy prediction in complex terrain was used. Predictions were made for three cases with or without considering obstacles and wind direction errors. The study found that by considering both obstacles and wind direction errors, prediction errors could be substantially reduced. The prediction errors were within 2.5 % or less for all three years.