• Title/Summary/Keyword: 육상풍력

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국내 저탄소 그린에너지 특집 3탄 - 바다의 힘! 바람에너지를 잡아라

  • Son, Yeong-Seon
    • Electric Engineers Magazine
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    • s.335
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    • pp.11-13
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    • 2010
  • 우리나라는 좁은 국토 면적에 비하여 삼면이 바다로 둘러싸인 지형적인 장점을 가지고 있어 해상풍력발전단지를 조성하는데 유리한 조건을 가지고 있다. 또한 해상풍력은 장애물이 적기 때문에 바람의 난류(불규칙적인 흐름)와 풍속변화가 적어 육상풍력보다 해상풍력의 발전효율이 1.4배 높으며, 일반적으로 1.5~2배 정도 발전량이 높은 것으로 알려져 해상풍력 개발에 박차를 가하고 있다.

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Analysis of Environmental Sustainability in South Korean Inland Windfarms (한국 육상풍력발전사업의 환경적 지속가능성 평가 연구 - 58개 환경영향평가서 사례에 대한 정량적 분석 -)

  • Jeong, Eunhae
    • Journal of Environmental Impact Assessment
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    • v.31 no.1
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    • pp.47-62
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    • 2022
  • Wind power has been rapidly growing over last decade in the world as well as in South Korea as a feasible renewable energy source. Providing sustainable energy to all while securing environmental sustainability requires evidence based policy making and innovative solutions. Through analysis of 58 cases of South Korean Environmental Impact Assessment (EIA) Report, this paper seeks to identify answers to the following two questions. What are the key characteristics for inland windfarm? Is there a way of measuring environmental sustainability to compare each location to reduce negative environmental impact? Variables related to environmental sustainability of each windfarm case were collected from EIA report and the factor analysis of environmental variables was conducted to calculate the weight for each variable to build environmental sustainability index (ESI) to provide as evidence-based tools for decision making on the location of inland windfarm. 58 cases were categorized as three types 1) Mountain type 2) Ranch Type and 3) Coastal Type depending on their height and degree of naturalness. For analytical research, first, it was successfully calculated environmental sustainability of each windfarm case ranging from 1.04 (#33, Ranch type) to -1.44 (#55, Mountain type). Second, the analysis results showed that ranch type is most environmentally sustainable (Average ESI = 0.4551), followed by coastal type (Ave ESI = 0.3712) and lastly mountain type (Average ESI = -0.3457). These findings are consistent with the previous researches on inland windfarms and provides substantive policy implication on the renewable energy policies.

Changes in insect diversity and composition after construction of an onshore wind farm (육상풍력발전단지 조성에 따른 곤충군집 변화에 관한 연구)

  • Jin Lee;Sung-Soo Kim;Moon-Jeong Jang
    • Korean Journal of Environmental Biology
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    • v.40 no.4
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    • pp.591-603
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    • 2022
  • This study was conducted to identify changes of insect compositions and diversity after construction of an onshore wind farm. We investigated insect fauna and compositions between a grassland deforested by the construction and a forest located at Yeongdeok and Yeongyang, Gyeongsangbuk-do, Korea. Insects were collected using a sweeping net and light trap. A total of 11 orders, 50 families, and 246 species, and 1,076 individuals were collected at study sites. By taxonomic group, Lepidoptera species were the most frequently found with 141 species, 417 individuals (38.8%), followed by Hymenoptera (20.6%), Hemiptera (16.2%), and Orthoptera (12.3%). There were also significant differences in insect species and community compositions between sites. Creating open-field deforested forests are beneficial for some insect groups such as Hymenoptera and Orthoptera. Our results suggest that deforesting by the construction of an onshore wind farm might affect the composition and diversity of insects. Results of this study provide basic data for research on onshore wind farms.

Grid-Connected Off-Shore Wind Power System Using 3-Level ANPC VSC (Active Neutral-Point-Clamped Voltage Source Converter) (Active NPC를 적용한 계통연계형 해상 풍력 발전용 전력변환 시스템)

  • Hong, Seok-Jin;Shin, Soo-Cheol;Lee, Hee-Jun;Choi, Chi-Hwan;Won, Chung-Yuen;Kim, Hack-Seong
    • Proceedings of the KIPE Conference
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    • 2012.11a
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    • pp.249-250
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    • 2012
  • 해상 풍력 발전은 가장 유망한 재생 에너지원의 하나이며, 육상 풍력 발전보다 풍력이 강력하고 일정하여 장시간 고출력 발생이 가능하다. 또한 소음, 공간적 한계, 경관훼손 등 기존 육상 풍력 발전의 단점을 보완하고 초대형 단지조성이 가능한 장점이 있다. 초대형 해상풍력단지에는 일반적으로 MW급의 해상풍력발전기가 사용된다. 본 논문에서는 MW급의 해상 풍력발전기에 ANPC(Active Neutral-Point-Clamped) Multi-Level VSC(Voltage Source Converter)를 적용하여 Back-to-Back으로 구성한 시스템을 제안하고 계통연계형 풍력 발전 시스템을 모의한 시뮬레이션을 통하여 제안된 시스템의 성능을 검증한다.

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Environmentally Available Potential of Renewable Energy in Korea: Onshore Wind and Photovoltaic (육상풍력 및 육상태양광의 환경적 가용입지 분석)

  • Lee, Young-Joon;Park, Jong-Yoon
    • Journal of Environmental Impact Assessment
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    • v.30 no.6
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    • pp.339-354
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    • 2021
  • The purpose of this study is to provide valuable information and data by analyzing the environmental status and potential forrenewable energy projects (or plans) based on environmental assessment (EA) data, so that more objective and scientific environmental assessments can be conducted. The study also suggests regional directions that could satisfy the goals of nature conservation and renewable energy. Based on the analysis of EA data that was conducted up until June 2019, the study analyzed the size, location and characteristics of both onshore wind power and onshore photovoltaic. The environmentally available potential by region was also derived by considering the main constraints and requirements related to the potential siting ofrenewable energy projects at the EA. Based on EA data, 63 out of 80 (79%) onshore wind power projects are shown to be located in mountainous areas. For onshore photovoltaic projects, a total of 7,363 projects were subjected to environmental assessment over the country. The environmentally potential area for onshore wind power, considering all the environmental regulatory factors, is 2,440 km2. For onshore photovoltaic, the environmentally available area estimated as idle farmland is 2,877 km2. The distribution and characteristics of the environmentally available potential of the region may be the most important factor that local governments should bear in mind in terms of promoting renewable energy development projects in the region. Based on the results of this study, even if we consider the national energy plan including the expected future increase, as well as environmental goals and socio-economic acceptance through an environmental assessment, the available resources forrenewable energy projects are not insufficient. It is possible to examine the adequacy of the target distribution rate of renewable energy sources by region taking into consideration the quantitative and scientific results such as the environmentally available potential data derived from this study.

Analysis of Wind and Wave Force acting on the Foundation of the Offshore Wind Tower (해상 타워의 기초에 작용하는 풍력과 파력 해석)

  • Kim, Nam-Hyeong;Go, Myeong-Jin
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2013.06a
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    • pp.273-274
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    • 2013
  • Recently, as offshore wind towers are developed, the size of wind towers have become larger and larger, and offshore wind towers are exposed to various external forces such as wave and current compared with onshore wind towers. Thus, the stability of offshore wind towers is more required than onshore wind towers. In this study, when the wind celerity of 60m/s blows to the cylinder, cone, and stair typed towers, the wind and wave forces on foundation are calculated by p-y relation.

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Industrial Trend Analysis of Windturbine's Part and System (풍력발전기 부품 및 시스템의 산업동향 분석)

  • Kwon, young-il
    • Proceedings of the Korea Contents Association Conference
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    • 2010.05a
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    • pp.554-556
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    • 2010
  • 풍력발전기의 수요가 유럽에서 북미, 아시아로 확대되고 있으며, 육상 풍력발전에 비해 대형 발전기 설치에 공간적 제약이 없는 해상 풍력발전이 선진국들에 의해 채택되고 있고 발전기의 대형화(Repowering)를 통한 에너지효율 증대, 단위 용량당 건설비 감소 등의 유리한 점 때문에 풍력발전기가 대형화되는 추세이다.

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Analysis of LCOE for Korean and Foreign Onshore Wind Turbines in Operation in Korea (국내에서 운영 중인 국산과 외국산 육상풍력발전기의 발전원가 분석)

  • Keon-Woo Lee;Kyung-Nam Ko
    • Journal of Wind Energy
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    • v.14 no.3
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    • pp.54-60
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    • 2023
  • In order to reveal the levelized cost of energy (LCOE) of Korean and foreign wind turbines, a study was conducted for Korean onshore wind farms. Actual CapEx and OpEx data were obtained from audit reports for 26 onshore wind farms corresponding to 53.87 percent of the total onshore wind farms in Korea in the Data Analysis, Retrieval Transfer (DART) system. In addition, capacity factor (CF) data were calculated from data provided by Statistics Korea. Random numbers were generated from distributions that were fitted by the datasets, which were used as input data to perform a Monte Carlo simulation (MCS). The levelized fixed cost (LFC) and the levelized variable cost (LVC) were calculated from distributions of the CapEx, the OpEx and the CF. As a result, the LCOEs of the analyzed total Korean wind farms, and Korean and foreign wind turbines were 147, 148, and 146 USD/MWh, respectively. The averaged LCOE of Korea was estimated to be 4 USD/MWh lower than that of Japan, while it was much higher than German and global averages.

Offshore Wind Power, Review (해상풍력(Offshore Wind Power) 기술동향)

  • Nah, Do-Baek;Shin, Hyo-Soon;Nah, Duck-Joo
    • Journal of Energy Engineering
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    • v.20 no.2
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    • pp.143-153
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    • 2011
  • Offshore wind power(OWP) is one of the most promising renewable energy and gives higher output than onland one due to stronger and consistent wind in offshore. it offsets shortcoming of noise, spatial limit and less affects scenery, and can be built in larger size. Korea has plenty of offshore wind resources as it is surrounded by the sea in three directions. This review describes recent progress in offshore wind turbine and substructure technology. Market trend in local and overseas, Number of papers published and patents registered are analysed.

Conceptual Design of Self-Weighing Support Structure for Offshore Wind Turbines and Self-Floating Field Test (자중조절형 해상풍력 지지구조 개념설계 및 부유이송 현장시험)

  • Kim, Seoktae;Kim, Donghyun;Kang, Keumseok;Jung, Minuk
    • KEPCO Journal on Electric Power and Energy
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    • v.2 no.4
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    • pp.631-638
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    • 2016
  • Offshore wind power can be an alternative for onshore wind power which suffers from not only civil complaints regarding to landscape damage and noise but also wind power siting due to lack of onshore site candidates. Compared to onshore wind power, offshore wind power is free from these problems considering that generally the sites are far enough from the coast. And more electricity is generated in offshore wind turbines due to abundant offshore wind resources. However high installation costs of offshore turbines could deteriorate the economical efficiency. The main cause of the high installation costs comes from a long-term lease of the heavy marine equipment and the consequential high rental cost. In this paper, the conceptual design of the support structure for offshore wind turbines will be suggested for the installation of them with less heavy marine equipment.