• 제목/요약/키워드: Rankine-Kelvin Green function

검색결과 7건 처리시간 0.018초

부유기 OWC 챔버의 파중 운동해석 (A Study on the Floating OWC Chamber Motion in Waves)

  • 홍도천
    • 한국해양공학회지
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    • 제16권3호
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    • pp.19-27
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    • 2002
  • The motion of a floating OWC chamber in waves is studied taking account of fluctuating air pressure in the air chamber. An atmospheric pressure drop occurs across the upper opening of the chamber which causes not only hydrodynamic but also pneumatic added mass and damping forces to the floating chamber. A velocity potential in the water due to the free surface oscillating pressure patch is added to the conventional radiation-diffraction potential problem. the potential problem inside the chamber is formulated by making use of the Green integral equation associated with the Rankine Green function wile the outer problem with the Kelvin Green function. The two integral equations are solved simultaneously by making use of a matching boundary condition at the lower opening of the chamber to the outer water region. The chamber motion in the frequency domain is calculated for various values of parameters related to the atmospheric pressure drop. The present methods can also be sued for the analysis of air-cushion vehicle motion as well as for the design of a floating OWC wave energy absorber.

부유식 OWC 챔버의 파중 운동해석 (A Study on the Floating OWC Chamber Motion in Waves)

  • 홍도천;홍사영
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2002년도 춘계학술대회 논문집
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    • pp.191-197
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    • 2002
  • The motion of a floating OWC chamber in waves is studied taking account of fluctuating.air pressure in the air chamber. An atmospheric pressure drop occurs across the upper opening of the chamber which causes not only hydrodynamic but also pneumatic added mass and damping forces to the floating chamber. A velocity potential in the water due to the free surface oscillating pressure patch is added to the conventional radiation-diffraction potential problem. The potential problem inside the chamber is formulated by making use of the Green integral equation associated with the Rankine Green function while the outer problem with the Kelvin Green function. The two integral equations are solved simultaneously by making use of a matching boundary condition at the lower opening of the chamber to the outer water region. The chamber motion in the frequency domain is calculated for various values of parameters related to the atmospheric pressure drop. The present methods can also be used for the analysis of air-cushion vehicle motion as well as for the design oj a floating owe wave energy absorber.

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Hybrid 적분방정식을 사용한 Flap-Harbour 복합체 파 에너지 흡수효율 추정 (Prediction of Wave Energy Absorption Efficiency of a Flp-Harbour Device by a Hybrid Integral Equation)

  • 김현주
    • 한국해양공학회지
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    • 제14권2호
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    • pp.1-6
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    • 2000
  • Wave energy absorption by a flap equipped with a harbor in a water of finite depth is studied. The wave potential is calculated by a hybrid integral equation consisting of Green integral equations associated with Rankine and Kelvin Green functions. The absorbed wave energy is calculated by both the near-field and far-field methods. The present methods can be used for the design of a flap-harbor wave energy absorber since the numerical results by the two methods are in good agreement.

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진동수주형 파력발전장치 공기실의 파력에너지 흡수효율 (Wave Energy Absorption Efficiency of Pneumatic Chamber of OWC Wave Energy Converter)

  • 홍기용;신승호;홍도천
    • 한국해양환경ㆍ에너지학회지
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    • 제10권3호
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    • pp.173-180
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    • 2007
  • 파력에너지 변환을 위해 설계된 착저식 진동수주형 공기실 내의 파진폭 변화를 우리나라 연안의 특징적인 파랑 조건을 적용하여 조사하였다. 진동수주형 공기실의 형상인자가 파력에너지 변환에 미치는 영향을 파력에너지의 흡수 효율 관점에서 분석하였다. 실험적 및 수치적 접근법을 함께 사용하여 그 결과들을 상호 비교하였으며, 주어진 파랑 분포 하에서 파력에너지 흡수가 최대가 되는 형상인자들의 최적화를 목적으로 연구가 수행되었다. 실험은 공기실의 이차적원 형상을 가정하여 이차원 조파수조에서 실시되었으며, 수치적 해석은 공기실 내에서는 변동하는 공기압을 고려할 수 있도록 Rankine Green 함수를 적용하고 공기실 밖에서는 Kelvin Green 함수를 적용하는 합성 적분방정식에 기초하여 수행되었다. 공기실 상부의 덕트 직경, 공기실 폭, 공기실 전면벽 및 후면벽의 깊이는 흡수되는 파력에너지의 크기와 정점 주기를 민감하게 변화시키는 주요한 형상인자들임을 확인하였다.

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부유식 OWC 파력발전 챔버의 파 표류력해석 (Mean Drift Force Acting on a Floating OWC Wave Power Device)

  • 홍도천;홍사영;홍석원
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2002년도 학술대회지
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    • pp.373-376
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    • 2002
  • The drift force acting on a floating OWC chamber in waves is studied taking account of fluctuating air pressure in the air chamber. A velocity potential in the water due to the free surface oscillating pressure patch is added to the conventional radiation-diffraction potential problem. The potential problem inside the chamber is formulated by making use of the Green integral equation associated with the Rankine Green function while the outer problem with the Kelvin Green function. The drift forces as well as the chamber motions are calculated taking account of the air pressure in the chamber.

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연안고정식 파력발전 겸 OWC 방파제 성능연구 (Study of Nearshore OWC Wave Power Absorbing Breakwater)

  • 홍도천;신승호;홍기용;홍석원
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2006년 창립20주년기념 정기학술대회 및 국제워크샵
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    • pp.465-468
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    • 2006
  • The wave power absorbing performance of a bottom-mounted oscillating water column (OWC) chamber structure is studied. The potential problem inside the chamber is solved by making use of the Green integral equation associated with the Rankine Green function while the outer problem with the Kelvin Green function taking account of fluctuating air pressure in the air chamber. The absorbed wave power, wave elevation inside the chamber, reflection coefficient and wave loads are calculated for various values of a parameter related to the fluctuating air pressure. The present methods can also be used for the design of a OWC breakwater which can absorb and reflect the incoming wave energy at the same time.

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진동수주형 파력발전장치 공기챔버의 파력에너지 흡수효율 (Wave Energy Absorption Efficiency of Pneumatic Chamber of OWC Wave Energy Conveter)

  • 홍기용;신승호;홍도천
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2007년도 춘계학술대회
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    • pp.621-625
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    • 2007
  • Oscillating wave amplitude in a bottom-mounted owe chamber designed for wave energy converter is investigated by applying characteristic wave conditions in Korean coastal water. The effects of shape parameters of OWC chamber in a view of wave energy absorbing capability are analyzed. Both experimental and numerical approaches are adopted and their results are compared to optimize the shape parameters which can result in a maximum power production under given wave distribution. The experiment was carried out in a wave flume under 2-D assumption of OWC chamber. In numerical scheme, the potential problem inside the chamber is solved by use of the Green integral equation associated with the Rankine Green function, while outer problem with the Kelvin Green function taking account of fluctuating air pressure in the chamber. Air duct diameter, chamber width, and submerged depths of front skirt and back wall of chamber changes the magnitude and peak frequency of wave absorption significantly.

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