• 제목/요약/키워드: wave loads

검색결과 406건 처리시간 0.031초

3차원 플로팅 구조물의 반강접 접합부 해석 (Analysis of Semi-Rigid Connections on 3D Floating Structures)

  • 박종서;송화철
    • 한국항해항만학회지
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    • 제36권3호
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    • pp.175-180
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    • 2012
  • 플로팅 상부구조물은 일반 건축물과 형태는 같지만 기초가 땅이 아닌 하부 부체에 지지되는 구조물로 파랑하중에 의한 영향을 크게 받으며, 파랑하중에 의한 하부구조물의 변형이 접합부에 영향을 미쳐 상부구조물의 이용자에게 사용성 및 안전성의 문제를 발생시키게 된다. 이에 따라 본 논문에서는 3차원 플로팅 구조물의 상부구조물과 하부구조물을 일체화한 전해석을 통하여 강접합과 반강접 접합에 대해 탄성 해석을 실시하였다. 구조물의 전해석과 하부구조물을 제외한 분리해석을 비교 분석 하였으며 탄성 해석을 통해 파랑하중의 CASE를 나누어 파랑하중의 변화에 따른 구조물의 모멘트 및 변위를 접합부에 따라 분류하고 비교하였다.

해상풍력 하부구조물 하중영향평가 및 해석기술연구 (A study on load evaluation and analysis for foundation of the offshore wind turbine system)

  • 권대용;박현철;정진화;김용천;이승민
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 추계학술대회 초록집
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    • pp.184.2-184.2
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    • 2010
  • With growing of wind turbine industry, offshore wind turbine system is getting more attention in recent years. Foundation of the offshore wind turbine plays a key role in stability of whole system. In this work, 5MW NREL reference wind turbine with rated speed of 11.4m/s is used for load calculation. Wind loads and wave loads are evaluated using GH-Bladed (Garard Hassan) and FAST (NREL). Additionally, FE simulation is carried out to investigate the wave effect on the support structure. Meanwhile, this work is trying to systematize and optimize load cases simulation for foundation of wind turbine system.

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쌍동선의 운동 및 파랑하중 해석 (Analysis of Motions and Wave Loads of Twin-Hull Ships in Waves)

  • 구자삼;조효제;이승철
    • 한국해양공학회지
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    • 제13권4호통권35호
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    • pp.132-142
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    • 1999
  • A three-dimensional linearised potential theory is presented for the prediction of motions and dynamic structural responses of twin-hull ships travelling with forward speed in regular waves. Comparisons between theoretical and experimental results are shown for the motion responses and lateral wave loads of an ASR(anti-submarine rescue) catamaran. In general, good agreement between theory and experiment is found except for some discrepancies that are believed to be caused by neglect of forward speed effects on free surface.

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파랑하중을 받는 부유체의 강성에 따른 응답 고찰 (Response Analysis of Floating Structure under Wave Loads Considering Stiffness)

  • 김병완;김영식;홍사영;경조현;조석규
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2006년도 정기 학술대회 논문집
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    • pp.941-948
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    • 2006
  • In this paper, the effect of stiffness on hydroelastic responses of plate-like floating structure under wave loads are studied. Direct method is used for the numerical analysis. In the numerical analysis, structural equation is formulated by finite element method(FEM) and higher order boundary element method(HOBEM) is employed for the analysis of fluid flow. A 1000m-long VLFS(Very Large Floating Structure) is considered in numerical analyses. By analyzing VLFS for various cases of stiffness, the characteristics of hydroelastic responses with the variation of stiffness are investigated.

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An investigation on the vibrations of laminated shells under aeroacoustic loads using a WFE approach

  • Errico, Fabrizio;Franco, F.;Ichchou, M.;De Rosa, S.;Petrone, G.
    • Advances in aircraft and spacecraft science
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    • 제6권6호
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    • pp.463-478
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    • 2019
  • The present work investigates the effect on the flow-induced vibrations of the lay-up sequence of composite laminated axisymmetric structures, using an hybrid approach based on a wave finite element and a transfer matrix method. The structural vibrations, under deterministic distributed pressure loads, diffuse acoustic field and turbulent boundary layer excitations, are analysed and compared. A multi-scale approach is used for the dynamic analysis of finite structures, using an elementary periodic subsystem. Different flow regimes and shell curvatures are analysed and the computational efficiency is also discussed.

환경변수가 자켓 하부구조물 해상 풍력시스템 거동에 미치는 영향 (Effects of environmental parameters for offshore wind turbine system with jacket support structure)

  • 이종선;박현철;;김용환;나상권;이종현
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 추계학술대회 초록집
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    • pp.38.1-38.1
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    • 2011
  • This study investigates the effects of Pierson-Moskowitz, Jonswap spectrum that are typical irregular wave spectrums for wind turbine system with jacket support structure. Also various offshore environmental parameters based on korean local condition were used in our study. The loads acting on the system was considered by referring to the Design Load Case from IEC guide line. And improved von Karman model was used as a turbulence model. As a result, various significant wave height and peak spectral period cause noticeable difference of extreme and fatigue loads prediction.

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서남해 파랑 후측모의 실험을 통한 왕등도 인근 파랑 특성 분석 (Analysis of Wave Characteristics near Wangdeungdo through Southwest Sea Wave Hindcasting)

  • 노영주;선민영
    • 한국해안·해양공학회논문집
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    • 제36권2호
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    • pp.61-69
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    • 2024
  • 해상풍력 단지 개발 시 파랑은 구조물 설계 하중 결정과 단지 배치 등에 있어서 필수적으로 고려되어야 한다. 그러나 해상풍력 개발지역으로 간주되고 있는 왕등도 인근 해역에 대한 파랑 후측 연구는 부족한 실정이다. 본 연구에서는 MIKE 21 모델을 이용하여 2021년 1년간 왕등도 중심의 서남해 파랑 후측을 통해 왕등도 인근 파랑 특성을 분석하였다. 파랑 후측 결과 상왕등도 부이와 부안 부이에서 유의파고에 대한 RMSE가 0.177, 0.225 Pearson 상관계수는 0.971, 0.970으로 높은 재현성을 보여주었다. 모델의 검증 후 왕등도 인근 해역에 대한 파랑 특성을 분석한 결과 계절에 따라 파랑이 크게 달라지는 경향을 보였다. 최대 유의파고 발생 시 위치별로 큰 차이를 보였으며 이는 해상풍력 구조물의 설계 하중 결정에 있어 중요한 영향을 미칠 것으로 예상된다.

해저 석유개발을 위한 해양구조물의 기본 설계/해석 및 실험기법 개발 -해양구조물에 작용하는 파랑하중 산정에 관한 연구 (A Study on the Determination of Wave Load Acting on Offshore Structures)

  • 이근무
    • 한국해양공학회지
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    • 제14권1호
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    • pp.6-10
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    • 2000
  • In this paper various methods of determining of wave loads acting ofshore structures including impact load due to breaking wave are studied and corresponding model test was performed. In the theoretical approach wave load by nonbreaking wave and impact load by breaking wave is determined by Morrison's equation Goda's equation and impact wave equation, In the experimental approach wave load by nonbreaking wave acting on cylindrical pile used in offshore structures is determined by measuring the strain on a cylindrical pile and compared with theoretical calue. in the numerical approach impact load by breaking wave acting on a modeled cylindrical pile is calculated by usign ANSYS FEM program and compared with theoretical value. It is found that the experimental and numerical results are comparable to theoretical results, Thus the determination of wave load acting on offshore structures can be obtained by a proposed methods and it acceptable.

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Aerodynamic response of articulated towers: state-of-the-art

  • Zaheer, M. Moonis;Islam, Nazrul
    • Wind and Structures
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    • 제11권2호
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    • pp.97-120
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    • 2008
  • Wind and wave loadings have a predominant role in the design of offshore structures in general, and articulated tower in particular for a successful service and survival during normal and extreme environmental conditions. Such towers are very sensitive to the dynamic effects of wind and wind generated waves. The exposed superstructure is subjected to aerodynamic loads while the submerged substructure is subjected to hydrodynamic loads. Articulated towers are designed such that their fundamental frequency is well below the wave frequency to avoid dynamic amplification. Dynamic interaction of these towers with environmental loads (wind, waves and currents) acts to impart a lesser overall shear and overturning moment due to compliance to such forces. This compliancy introduces geometric nonlinearity due to large displacements, which becomes an important consideration in the analysis of articulated towers. Prediction of the nonlinear behaviour of these towers in the harsh ocean environment is difficult. However, simplified realistic mathematical models are employed to gain an important insight into the problem and to explore the dynamic behaviour. In this paper, various modeling approaches and solution methods for articulated towers adopted by past researchers are reviewed. Besides, reliability of articulation system, the paper also discussed the design, installation and performance of articulated towers around the world oceans.

The structural safety assessment of a tie-down system on a tension leg platform during hurricane events

  • Yang, Chan K.;Kim, M.H.
    • Ocean Systems Engineering
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    • 제1권4호
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    • pp.263-283
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    • 2011
  • The performance of a rig tie-down system on a TLP (Tension Leg Platform) is investigated for 10-year, 100-year, and 1000-year hurricane environments. The inertia loading on the derrick is obtained from the three-hour time histories of the platform motions and accelerations, and the dynamic wind forces as well as the time-dependent heel-induced gravitational forces are also applied. Then, the connection loads between the derrick and its substructure as well as the substructure and deck are obtained to assess the safety of the tie-down system. Both linear and nonlinear inertia loads on the derrick are included. The resultant external forces are subsequently used to calculate the loads on the tie-down clamps at every time step with the assumption of rigid derrick. The exact dynamic equations including nonlinear terms are used with all the linear and second-order wave forces considering that some dynamic contributions, such as rotational inertia, centripetal forces, and the nonlinear excitations, have not been accounted for in the conventional engineering practices. From the numerical simulations, it is seen that the contributions of the second-order sum-frequency (or springing) accelerations can be appreciable in certain hurricane conditions. Finally, the maximum reaction loads on the clamps are obtained and used to check the possibility of slip, shear, and tensile failure of the tie-down system for any given environment.