• 제목/요약/키워드: Wave power generation

검색결과 257건 처리시간 0.031초

불규칙파중 파랑에너지 변환효율 향상을 위한 래칭 제어전략 (Latching Control Strategy for Improvement Wave Energy Conversion in Irregular Waves)

  • 조일형;김정록;김경환;홍기용
    • 한국해양환경ㆍ에너지학회지
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    • 제18권4호
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    • pp.291-297
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    • 2015
  • 10 MW급의 파력-해상풍력 복합발전 플랫폼 설치해역으로 고려되고 있는 차귀도 해역에서 측정된 파랑정보를 이용하여 파랑스펙트럼을 구하고, 이로부터 생성된 불규칙파에 따라 수직 운동하는 파력발전기에 Sheng et al.(2015)이 제안한 래칭 제어기법을 적용하였다. 래칭 시간을 정할 때 필요한 입사파의 주기로 불규칙파의 통계 대푯값인 피크 주기를 사용하였다. 래칭 제어기법을 불규칙파중 부이의 시간영역 해석에 적용한 결과, 약 50%의 추출파워의 증가를 가져왔다.

Research into The Future Development of the Hybrid System for Buoy

  • Lee, Ji-Young;Kim, Jong-Do;Lee, Jong-Ho;Lee, Jin-Yeol;Oh, Jin-Seok
    • Journal of Advanced Marine Engineering and Technology
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    • 제31권5호
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    • pp.583-591
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    • 2007
  • This paper reports the performance of a 150W PV-wave hybrid system with battery storage in buoy. This system was originally designed to meet a new hybrid ower system for buoy in Korea. In the case or lighted buoys and lighthouses, a light failure alarm system of wireless radio is attached so that light failures are immediately notified to the office. At lighthouse offshore fixed lights and light buoys where commercial electricity is not available, the power source depends on solar system and batteries. This power system has a various problems. Therefore energy derived from the sunshine, wind and waves has been used as the energy source lot aids to navigation. Recently a hybrid system of combining the solar, wind and the wave generator is a favorable system lot the ocean facilities like lighthouse and buoy. The hybrid system in this paper is intended for variable DC load like light, communication system in the buoy and includes a PV-wane generation system and battery. This is composed a high efficiency charging algorithm, switching converter and controller. This paper includes discussion on system reliability, power quality, and effects of hybrid system in the buoy. Simulation and experimental results show excellent performance.

태양광 발전시스템을 위한 단상 PWM 전압형 인버터 (A Single-phase PWM Voltage Source Inverter for Photovoltaic Generation System)

  • 유택빈;성낙규;강승욱;이승환;이훈구;한경희
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1995년도 하계학술대회 논문집 A
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    • pp.443-445
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    • 1995
  • Since the residential load is an AC load, while the output of solar cell is a DC power, the photovoltaic system needs the DC/AC converter to utilize solar cell and must provide the sinusoidal wave current and voltage with unity power factor in the case of driving to Interact with utility line. It is always necessary for the output of solar cell to operate in the vicinity of maximum power point, since it is greatly fluctuated by insolation. This paper treats that we will constitute a single phase PWM voltage source inverter and trace the modulation index which always maximize the output of solar cell in propotion to insolation variation and prove it by simulation that we can provide current wave, which is nearly sinusoidal wave with unity power factor, for load and utility line.

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연근해 파력발전 시스템의 출력 특성 분석 (Analysis of Output Power Characteristics for Inshore Wave Power Generation System)

  • 한상헌;윤영두;성용준;최윤회
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2015년도 전력전자학술대회 논문집
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    • pp.279-280
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    • 2015
  • 본 논문에서는 연근해 파력발전 시스템을 제안한다. 바다에는 부력체와 동력전달부만을 설치하고, 나머지 시스템은 육상에 설치하여, 기존의 원해 파력발전 시스템에 비해 초비 투자 비용이 저감된다. 연근해 파력발전 시스템의 축소 모형을 제작하였으며, 이를 통해, 연근해 파력발전 시스템의 출력 특성을 분석하였다. 제안된 시스템의 출력 특성이 풍력발전 시스템의 특성과 비슷하게 나타남을 확인할 수 있으며, 실현 가능성이 충분하다고 판단할 수 있다.

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TERRAPOWER, LLC TRAVELING WAVE REACTOR DEVELOPMENT PROGRAM OVERVIEW

  • Hejzlar, Pavel;Petroski, Robert;Cheatham, Jesse;Touran, Nick;Cohen, Michael;Truong, Bao;Latta, Ryan;Werner, Mark;Burke, Tom;Tandy, Jay;Garrett, Mike;Johnson, Brian;Ellis, Tyler;Mcwhirter, Jon;Odedra, Ash;Schweiger, Pat;Adkisson, Doug;Gilleland, John
    • Nuclear Engineering and Technology
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    • 제45권6호
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    • pp.731-744
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    • 2013
  • Energy security is a topic of high importance to many countries throughout the world. Countries with access to vast energy supplies enjoy all of the economic and political benefits that come with controlling a highly sought after commodity. Given the desire to diversify away from fossil fuels due to rising environmental and economic concerns, there are limited technology options available for baseload electricity generation. Further complicating this issue is the desire for energy sources to be sustainable and globally scalable in addition to being economic and environmentally benign. Nuclear energy in its current form meets many but not all of these attributes. In order to address these limitations, TerraPower, LLC has developed the Traveling Wave Reactor (TWR) which is a near-term deployable and truly sustainable energy solution that is globally scalable for the indefinite future. The fast neutron spectrum allows up to a ~30-fold gain in fuel utilization efficiency when compared to conventional light water reactors utilizing enriched fuel. When compared to other fast reactors, TWRs represent the lowest cost alternative to enjoy the energy security benefits of an advanced nuclear fuel cycle without the associated proliferation concerns of chemical reprocessing. On a country level, this represents a significant savings in the energy generation infrastructure for several reasons 1) no reprocessing plants need to be built, 2) a reduced number of enrichment plants need to be built, 3) reduced waste production results in a lower repository capacity requirement and reduced waste transportation costs and 4) less uranium ore needs to be mined or purchased since natural or depleted uranium can be used directly as fuel. With advanced technological development and added cost, TWRs are also capable of reusing both their own used fuel and used fuel from LWRs, thereby eliminating the need for enrichment in the longer term and reducing the overall societal waste burden. This paper describes the origins and current status of the TWR development program at TerraPower, LLC. Some of the areas covered include the key TWR design challenges and brief descriptions of TWR-Prototype (TWR-P) reactor. Selected information on the TWR-P core designs are also provided in the areas of neutronic, thermal hydraulic and fuel performance. The TWR-P plant design is also described in such areas as; system design descriptions, mechanical design, and safety performance.

전자식 안정기의 고조파 저감에 관한 연구 (A study on reducing the harmonic wave in the electronic ballast)

  • 박찬근;이성근
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 2000년도 춘계종합학술대회
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    • pp.484-488
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    • 2000
  • 본 논문에서는 형광등용 인버터에서 발생하는 고조파를 억제할 수 있는 2단 평활랑 콘덴서를 이용한 고효율 고조파 저감회로를 제안한다. 형광등용 인버터에 직류전원으로서 사용되는 전파 전류의 파형은 전압 평활 콘덴서가 충전될 때 입력전압의 최대치 부근에서 펄스형태를 가지는 돌입전류의 발생으로 인해 많은 고조파들을 함유하게 된다. 따라서 이 고조파의 원인이 되는 돌입전류를 억제하기 위하여 본 논문에서는 전단 평활용 콘덴서의 충전전압을 이용하여 입력에서의 갑작스러운 충전전류를 억제하는 방법을 제안하였다. 그 결과 공급전류에서의 고조파의 발생을 억제하여 역율을 개선하게된다. 이에 대한 타당성을 시뮬레이션을 통하여 확인하였다.

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알루미늄 호일 퓨즈를 이용한 펄스 압력발생 및 이용기술 개발 (A Development of the Rotary Arc Gap Switch for Pulsed High Current Transfer)

  • 조주현;임근희;이홍식
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 하계학술대회 논문집 E
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    • pp.2242-2244
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    • 1999
  • Recently, An important research field of pulsed power is high voltage, high power generation with exploding wire opening switch. Another point of view exploding wire effects have been researched for generation of the pulsed high pressure shock wave. Theoretical considerations of the shock pressure generation along with experiment results are presented in this paper and. Some experimental results of hard rock fracturing show the possibilities of commercial using.

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Characteristics of S-wave and P-wave velocities in Gyeongju - Pohang regions of South Korea: Correlation analysis with strength and modulus of rocks and N values of soils

  • Min-Ji Kim;Tae-Min Oh;Dong-Woo Ryu
    • Geomechanics and Engineering
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    • 제37권6호
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    • pp.577-590
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    • 2024
  • With increasing demand for nuclear power generation, nuclear structures are being planned and constructed worldwide. A grave safety concern is that these structures are sensitive to large-magnitude shaking, e.g., during earthquakes. Seismic response analysis, which requires P- and S-wave velocities, is a key element in nuclear structure design. Accordingly, it is important to determine the P- and S-wave velocities in the Gyeongju and Pohang regions of South Korea, which are home to nuclear power plants and have a history of seismic activity. P- and S-wave velocities can be obtained indirectly through a correlation with physical properties (e.g., N values, Young's modulus, and uniaxial compressive strength), and researchers worldwide have proposed regression equations. However, the Gyeongju and Pohang regions of Korea have not been considered in previous studies. Therefore, a database was constructed for these regions. The database includes physical properties such as N values and P- and S-wave velocities of the soil layer, as well as the uniaxial compressive strength, Young's modulus, and P- and S-wave velocities of the bedrock layer. Using the constructed database, the geological characteristics and distribution of physical properties of the study region were analyzed. Furthermore, models for predicting P- and S-wave velocities were developed for soil and bedrock layers in the Gyeongju and Pohang regions. In particular, the model for predicting the S-wave velocity for the soil layers was compared with models from previous studies, and the results indicated its effectiveness in predicting the S-wave velocity for the soil layers in the Gyeongju and Pohang regions using the N values. The proposed models for predicting P- and S-wave velocities will contribute to predicting the damage caused by earthquakes.

펄스파워전원용 고전압 펄스변압기 (High voltage Pulse Transformer for Pulsed Power Supply)

  • 김종해;구치욱;최영욱;이홍식;임근희;고광철
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1998년도 하계학술대회 논문집 E
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    • pp.1755-1757
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    • 1998
  • Pulse transformers have been developed to apply for pulsed power technology as an alternative of a Marx generator. To obtain repetitive pulsed power generation, it is necessary to observe the rising time of output of pulse transformer. In this paper, using the equivalent circuit, The rising wave of output of pulse transformer is simulated for various input wave by using the Electromagnetic transient program(EMTP).

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