• 제목/요약/키워드: 3-D numerical wave tank

검색결과 34건 처리시간 0.021초

해양환경공학의 다목적 수치시뮬레이션을 위한 Virtual Reality 기술 (Virtual Reality Technology for Multipurpose Numerical Simulation in Marine Environmental Engineering)

  • 박종천
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2002년도 추계학술대회 논문집
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    • pp.174-180
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    • 2002
  • A virtual reality technology for multipurpose numerical simulation is developed to reproduce and investigate a variety of ocean environmental problems in a 3D-Numerical Wave Tank. The governing equations for solving incompressible fluid motion are Navier-Stokes equation and continuity equation, and the Marker-Density function technique is adopted to implement the fully-nonlinear free-surface kinematic condition. The marine environmental situations, i.e. waves, currents, wind, etc., are reproduced by use of multi-segmented wavemaker on the basis of the so-called "snake-principle". In this paper, some numerical reproduction techniques for regular and irregular waves, multi-directional waves, Bull's-eye wave, wave-current, and solitary wave are presented, and a model test in motion with large amplitude of roll angle is conducted in the developed 3D-NWT, using a overlaid grid system.

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3차원 무반사 수치파동수조에서 경사입사파의 조파기법 개발 (On Generation Methods of Oblique Incidence Waves in Three-Dimensional Numerical Wave Tank with Non-Reflected System)

  • 허동수;이우동
    • 한국해안·해양공학회논문집
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    • 제23권6호
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    • pp.401-406
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    • 2011
  • 본 연구에서는 3차원 수치파동수조에서 무반사 조파시스템을 이용한 경사입사파의 조파방법을 새롭게 제안하고, 계산된 수면변위 및 수평유속에 대한 수치결과와 Stokes파의 3차 근사이론값과의 비교 분석을 통하여 새로운 모델의 검증을 실시하였다. 그 결과 본 연구에서 제안한 경사입사파의 조파방법의 타당성과 유효성을 확인할 수 있었다.

Experimental and numerical investigation of a surface-fixed horizontal porous wave barrier

  • Poguluri, Sunny Kumar;Kim, Jeongrok;George, Arun;Cho, I.H.
    • Ocean Systems Engineering
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    • 제11권1호
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    • pp.1-16
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    • 2021
  • Experimental and numerical investigations were conducted to study the performance of a surface-fixed horizontal porous wave barrier in regular waves. The characteristics of the reflection and transmission coefficients, energy dissipation, and vertical wave force were examined versus different porosities of the barrier. Numerical simulations based on 3D Reynolds Averaged Navier-Stokes equations with standard low-Re k-ε turbulent closure and volume of fluid approach were accomplished and compared with the experimental results conducted in a 2D wave tank. Experimental measurements and numerical simulations were shown to be in satisfactory agreement. The qualitative wave behavior propagating over a horizontal porous barrier such as wave run-up, wave breaking, air entrapment, jet flow, and vortex generation was reproduced by CFD computation. Through the discrete harmonic decomposition of the vertical wave force on a wave barrier, the nonlinear characteristics were revealed quantitatively. It was concluded that the surface-fixed horizontal barrier is more effective in dissipating wave energy in the short wave period region and more energy conversion was observed from the first harmonic to higher harmonics with the increase of porosity. The present numerical approach will provide a predictive tool for an accurate and efficient design of the surface-fixed horizontal porous wave barrier.

투과성 및 불투과성 경사면 상에서 지진해일의 처오름 높이에 관한 수치적 검토 (A Numerical Study on Tsunami Run-up Heights on Impermeable/Permeable Slope)

  • 이우동;허동수;구남헌
    • 한국연안방재학회지
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    • 제1권1호
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    • pp.1-9
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    • 2014
  • In order to examine the characteristics of tsunami run-up heights on impermeable/permeable slope, a numerical wave tank by upgrading LES-WASS-3D was used in this study. Then, the model were compared with existing hydraulic model test for its verification. The numerical results well reproduced experimental results of solitary wave deformation, propagation and run-up height under various conditions. Also, the numerical simulation with a slope boundary condition has been carried out to understand solitary wave run-up on impermeable/permeable slope. It is shown that the run-up heights on permeable slope is 52.64-63.2% smaller than those on the impermeable slope because of wave energy dissipation inside the porous media. In addition, it is revealed that the numerical results with slope boundary condition agreed well with experimental results in comparison with the results by using stair type boundary condition.

3차원불규칙파동장하의 진동수주형 파력발전구조물에서 불규칙공기흐름의 수치시뮬레이션 (Numerical Simulation of Irregular Airflow within Wave Power Converter Using OWC by Action of 3-Dimensional Irregular Waves)

  • 이광호;박정현;김도삼
    • 한국해안·해양공학회논문집
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    • 제24권3호
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    • pp.189-202
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    • 2012
  • 공기실 내에서 해수면의 상하운동을 공기흐름으로 변환하고, 이를 터빈의 구동력으로 이용하는 진동수주형(OWC; Oscillating Water Column)의 파력발전시스템은 파랑에너지흡수장치 중에 가장 효율적인 것으로 알려져 있다. 본 연구에서는 3차원불규칙파수치파동수로에 기초한 3D-NIT(3-Dimensional Numerical Irregular wave Tank)모델을 규칙파동장에 적용하여 산정된 공기실 내 수위변동의 시간변화로부터 공기흐름속도를 추정하고, 이의 결과와 수리모형실험으로부터 얻어진 공기흐름속도와를 비교하여 본 3D-NIT모델의 적용성을 검토하였다. 또한, 불규칙파동장하의 OWC파력발전구조물에서 공기실 내 공기흐름의 해석에 3D-NIT모델을 적용하여 입사주파수스펙트럼의 변화에 따른 공기흐름 주파수스펙트럼의 변화특성, 구조물의 존재여부에 따른 공기실 위치에서 주파수스펙트럼의 변화특성 및 구조물에 의한 반사율의 변화특성 등을 검토하였다. 이로부터 공기실 내에서 수위변동 및 공기흐름의 시계열 자료에서 위상차가 존재하며, 공기실 내의 공진에 의해 수위변동의 주파수스펙트럼에서 첨두치가 증폭되는 현상 등을 알 수 있었다.

수중반사파 환경에서의 근접음장 홀로그래피 적용에 대한 오차 고찰 (Error Investigation in use of Near-field Acoustic Holography in the Underwater Environment of Reflected Wave)

  • 이종주;강명환;한승진;정현주;배수룡;정우진
    • 한국소음진동공학회논문집
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    • 제24권12호
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    • pp.969-976
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    • 2014
  • Nowadays, it is required for naval ships to estimate 3D underwater radiated noise pattern in all direction at peak frequencies of hull vibration for the reduction of being detected and doing the effective operation. For this purpose, the numerical method has to be developed to calculate 3D underwater radiated noise pattern with experimental data. It is very difficult to obtain the experimental data for the real ship. Alternative to get the experimental results is to use NAH(near-field acoustic holography) in acoustic tank with experimental model. Application of NAH in acoustic tank for the experimental model needs some investigation of reflection wave from the wall of the acoustic tank and unmeasured zone of the experimental model due to the supporting structure for it. In this study, the effect of reflection wave in the acoustic tank and unmeasured area of the experimental model when using the NAH was investigated with experiment and numerical model. From these, it is known for the error due to reflection wave can be reduced when the distance between the measurement plane and source is being shorten. Also, unmeasured area of the experimental model gives rise to some error in the estimation of the far-field acoustic pressure.

Wave propagation in a 3D fully nonlinear NWT based on MTF coupled with DZ method for the downstream boundary

  • Xu, G.;Hamouda, A.M.S.;Khoo, B.C.
    • Ocean Systems Engineering
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    • 제4권2호
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    • pp.83-97
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    • 2014
  • Wave propagation in a three-dimensional (3D) fully nonlinear numerical wave tank (NWT) is studied based on velocity potential theory. The governing Laplace equation with fully nonlinear boundary conditions on the moving free surface is solved using the indirect desingularized boundary integral equation method (DBIEM). The fourth-order predictor-corrector Adams-Bashforth-Moulton scheme (ABM4) and mixed Eulerian-Lagrangian (MEL) method are used for the time-stepping integration of the free surface boundary conditions. A smoothing algorithm, B-spline, is applied to eliminate the possible saw-tooth instabilities. The artificial wave speed employed in MTF (multi-transmitting formula) approach is investigated for fully nonlinear wave problem. The numerical results from incorporating the damping zone (DZ), MTF and MTF coupled DZ (MTF+DZ) methods as radiation condition are compared with analytical solution. An effective MTF+DZ method is finally adopted to simulate the 3D linear wave, second-order wave and irregular wave propagation. It is shown that the MTF+DZ method can be used for simulating fully nonlinear wave propagation very efficiently.

중첩 격자계를 이용한 물체운동의 수치 시뮬레이션 (Numerical Simulation of Body Motion Using a Composite Grid System)

  • 박종천;전호환;송기종
    • 대한조선학회논문집
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    • 제40권5호
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    • pp.36-42
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    • 2003
  • A CFD simulation technique has been developed to handle the unsteady body motion with large amplitude by use of overlapping multi-block grid system. The three-dimensional, viscous and incompressible flow around body is investigated by solving the Navier-Stokes equations, and the motion of body is represented by moving effect of the grid system. Composite grid system is employed in order to deal with both the body motion with large amplitude and the condition of numerical wave maker in convenience at the same time. The governing equations, Navier-Stokes (N-S) and continuity equations, are discretized by a finite volume method, in the framework of an O-H type boundary-fitted grid system (inner grid system including test model) and a rectangular grid system (outer grid system including simulation equipments for generation of wave environments). If this study, several flow configurations, such as an oscillating cylinder with large KC number, are studied in order to predict and evaluate the hydrodynamic forces. Furthermore, the motion simulation of a Series 60 model advancing in a uniform flow under the condition of enforced roll motion of angle 20$^{\circ}$ is performed in the developed numerical wave tank.

밀도성층을 통과하는 수면파 및 내부파의 전파특성 (Characteristics of Surface and Internal Wave Propagation through Density Stratification)

  • 이우동;허동수
    • 대한토목학회논문집
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    • 제36권5호
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    • pp.819-830
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    • 2016
  • 아직까지 밀도성층을 통과하는 파랑변형에 관한 동수학적 특성에 대해서 명확히 밝혀진 부분은 그다지 많지 않다. 따라서 본 연구에서는 2층 밀도성층을 통과하는 파랑의 수리특성을 수치적으로 해석하기 위하여 온도와 염분에 따른 밀도류를 해석할 수 있게 개량된 3차원 수치파동수조(LES-WASS-3D ver. 2.0)를 이용하여 수치시뮬레이션을 수행하였다. 그리고 이용하는 수치파동수조의 타당성 및 유효성을 확인하기 위하여 Stokes 3차 파랑이론에 근거한 내부파형을 비교 검토하였다. 수치시뮬레이션 결과로부터 밀도성층을 통과하는 수면파 및 내부파의 파고가 감소하는 현상을 알 수 있었으며, 이것은 상 하층의 밀도차이에 기인한 전파속도 차이로 인하여 계면에서 강한 와도가 발생하기 때문으로 확인되었다. 또한 밀도성층의 밀도차이가 증가할수록, 상 하층의 수심비가 증가할수록(상층의 수심이 깊어질수록) 와도가 강하게 발생하여 수면파 및 내부파의 파고감쇠를 심화시키는 것을 확인할 수 있었다.

하구에서 파랑-흐름 상호작용이 3차원 흐름특성에 미치는 영향 (Effects of Wave-Current Interactions on 3-D Flow Fields in a River Mouth)

  • 이우동;전호성;박종률;허동수
    • 한국해양공학회지
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    • 제31권1호
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    • pp.36-46
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    • 2017
  • Most of the studies on the hydraulic characteristics of wave-current interaction have used 2-D hydraulic experiments or 2-D numerical simulations. However, it is difficult to understand the wave-current interaction found in actual estuaries using these. Therefore, a numerical water tank was constructed in this study to perform simulations involving a 3-D river mouth. The result showed a change in the water surface at the river mouth from the wave-current interaction. With an increase in the ratio ($V_c/C_i$) between the river current and wave celerity, the wave height and mean water level of the river increased at the wave and current meeting point. A higher $V_c/C_i$ caused a stronger wave-current interaction and increased the turbulence kinetic energy. Thus, the wave height attenuation became larger by the wave-current interaction with a higher $V_c/C_i$. In addition, it was possible to understand the flow characteristics in the vicinity of the river mouth as a result of the wave-current interaction using the mean flow and mean time-averaged velocity at the mid-cross section of river.