• 제목/요약/키워드: linear wave theory

검색결과 295건 처리시간 0.024초

A Strength Analysis of a Hull Girder in a Rough Sea

  • Kim, Sa-Soo;Shin, Ku-Kyun;Son, Sung-Wan
    • Selected Papers of The Society of Naval Architects of Korea
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    • 제2권1호
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    • pp.79-105
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    • 1994
  • A ship in waves is suffered from the various wave loads that comes from its motion throughout its life. Because these loads are dynamic, the analysis of a ship structure must be considered as the dynamic problem precisely. In the rationally-based design, the dynamic structural analysis is carried out using dynamic wave loads provided from the results of the ship motion calculation as a rigid body. This method is based on the linear theory assumed low wave height and small amplitude of motion. But at the rough sea condition, high wave height, compared with ship's depth, induce the large ship motion, so the ship section configuration under waterline is rapidly changed at each time. This results in a non-linear problem. Considering above situation in this paper, a strength analysis method is introduced for the hull girder among waves considering non-linear hydrodynamic forces. This paper evaluates the overall or primary level of the ship structural dynamic loading and dynamic response provided from the non-linear wave forces, and bottom flare impact forces by momentum slamming theory. For numerical calculation a ship is idealized as a hollow thin-walled box beam using thin walled beam theory and the finite element method is used. This method applied to a 40,000 ton double hull tanker and attention is paid to the influence of the response of the ship's speed, wave length and wave height compared with the linear strip theory.

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Comparison between quasi-linear theory and particle-in-cell simulation of solar wind instabilities

  • Hwang, Junga;Seough, Jungjoon;Yoon, Peter H.
    • 천문학회보
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    • 제41권1호
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    • pp.47.2-47.2
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    • 2016
  • The protons and helium ions in the solar wind are observed to possess anisotropic temperature profiles. The anisotropy appears to be limited by various marginal instability conditions. One of the efficient methods to investigate the global dynamics and distribution of various temperature anisotropies in the large-scale solar wind models may be that based upon the macroscopic quasi-linear approach. The present paper investigates the proton and helium ion anisotropy instabilities on the basis of comparison between the quasi-linear theory versus particle-in-cell simulation. It is found that the overall dynamical development of the particle temperatures is quite accurately reproduced by the macroscopic quasi-linear scheme. The wave energy development in time, however, shows somewhat less restrictive comparisons, indicating that while the quasi-linear method is acceptable for the particle dynamics, the wave analysis probably requires higher-order physics, such as wave-wave coupling or nonlinear wave-particle interaction. We carried out comparative studies of proton firehose instability, aperiodic ordinary mode instability, and helium ion anisotropy instability. It was found that the agreement between QL theory and PIC simulation is rather good. It means that the quasilinear approximation enjoys only a limited range of validity, especially for the wave dynamics and for the relatively high-beta regime.

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Recent Progress of Freak Wave Prediction

  • Mori, Nobuhito;Janssen, Peter A.E.M.
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2006년 창립20주년기념 정기학술대회 및 국제워크샵
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    • pp.127-134
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    • 2006
  • Based on a weakly non-Gaussian theory the occurrence probability of freak waves is formulated in terms of the number of waves in a time series and the surface elevation kurtosis. Finite kurtosis gives rise to a significant enhancement of freak wave generation in comparison with the linear narrow banded wave theory. For fixed number of waves, the estimated amplification ratio of freak wave occurrence due to the deviation from the Gaussian theory is 50% - 300%. The results of the theory are compared with laboratory and field data.

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2차원 조파수조에서의 파 생성 특성 조사 (Investigation of Characteristics of Waves Generated in Two-Dimensional Wave Channel)

  • 안재열;최정규;김형태
    • 한국해양공학회지
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    • 제27권4호
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    • pp.68-75
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    • 2013
  • This paper investigates the characteristics of waves generated by a flap-type wave maker in a two-dimensional wave channel. Measurements are carried out for various water depths, wave heights, periods, and lengths capacitance-type wave height gages. The experimental results are shown to satisfy the dispersion relation of the linear wave theory. For waves with a small height and long period, the wave profiles agree well with those of the linear wave theory. However, as the wave height and period become higher and shorter, respectively, it is shown that the wave profiles measured in the present experiments are different from the linear wave profiles, and the measured wave heights are smaller than the target wave heights, which may be due to the non-linearity of the waves. As the wave progresses toward the channel end, the wave height gradually decreases. This reduction in the wave height along the wave channel is explained by the wave energy dissipation due to the friction of the side walls of the channel. The performance of the wave absorber in the channel is found to be acceptable from the results of the wave reflection tests.

선형파 이론에 의한 분산계수 유도 (Derivation of the Dispersion Coefficient based on the Linear Wave Theory)

  • 조홍연;정신택
    • 한국해안해양공학회지
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    • 제12권4호
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    • pp.190-194
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    • 2000
  • 선형파 이론에서 제시되는 유속분포를 이용하여 파랑인자에 의하여 영향을 받는 분산계수를 이론적으로 유도하였다. 유도된 분산계수는 수심평균, 주기 평균된 값으로 천해조건보다 심해조건에서 큰 값을 보이고 있다. 또한, 분산계수 값은 연직 방향 혼합시간에 비하여 큰 주기 값에서는 특정한 값으로 수렴하고, 매우 작은 주기 값에서는 0으로 되는 일반적인 경향도 보이고 있다. 한편, 단순한 지형 및 가정 하에서 유도된 본 분산계수를 보다 실질적인 상황에서도 적용할 수 있고, 천해영역의 조건을 반영할 수 있도록 보완·수정할 필요가 있다.

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Wave propagation in a microbeam based on the modified couple stress theory

  • Kocaturk, Turgut;Akbas, Seref Doguscan
    • Structural Engineering and Mechanics
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    • 제46권3호
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    • pp.417-431
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    • 2013
  • This paper presents responses of the free end of a cantilever micro beam under the effect of an impact force based on the modified couple stress theory. The beam is excited by a transverse triangular force impulse modulated by a harmonic motion. The Kelvin-Voigt model for the material of the beam is used. The considered problem is investigated within the Bernoulli-Euler beam theory by using energy based finite element method. The system of equations of motion is derived by using Lagrange's equations. The obtained system of linear differential equations is reduced to a linear algebraic equation system and solved in the time domain by using Newmark average acceleration method. In the study, the difference of the modified couple stress theory and the classical beam theory is investigated for the wave propagation. A few of the obtained results are compared with the previously published results. The influences of the material length scale parameter on the wave propagation are investigated in detail. It is clearly seen from the results that the classical beam theory based on the modified couple stress theory must be used instead of the classical theory for small values of beam height.

Performance Analysis of Multiple Wave Energy Converters due to Rotor Spacing

  • Poguluri, Sunny Kumar;Kim, Dongeun;Ko, Haeng Sik;Bae, Yoon Hyeok
    • 한국해양공학회지
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    • 제35권3호
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    • pp.229-237
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    • 2021
  • A numerical hydrodynamic performance analysis of the pitch-type multibody wave energy converter (WEC) is carried out based on both linear potential flow theory and computational fluid dynamics (CFD) in the unidirectional wave condition. In the present study, Salter's duck (rotor) is chosen for the analysis. The basic concept of the WEC rotor, which nods when the pressure-induced motions are in phase, is that it converts the kinetic and potential energies of the wave into rotational mechanical energy with the proper power-take-off system. This energy is converted to useful electric energy. The analysis is carried out using three WEC rotors. A multibody analysis using linear potential flow theory is performed using WAMIT (three-dimensional diffraction/radiation potential analysis program), and a CFD analysis is performed by placing three WEC rotors in a numerical wave tank. In particular, the spacing between the three rotors is set to 0.8, 1, and 1.2 times the rotor width, and the hydrodynamic interaction between adjacent rotors is checked. Finally, it is confirmed that the dynamic performance of the rotors slightly changes, but the difference due to the spacing is not noticeable. In addition, the CFD analysis shows a lateral flow phenomenon that cannot be confirmed by linear potential theory, and it is confirmed that the CFD analysis is necessary for the motion analysis of the rotor.

파랑 중 해중철도에 작용하는 유체력 계산 및 검증 (Verification of Calculated Hydrodynamic Forces Acting on Submerged Floating Railway In Waves)

  • 서승일;문형석;이진호;김진하
    • 한국철도학회논문집
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    • 제17권6호
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    • pp.397-401
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    • 2014
  • 신개념의 해상 교통 인프라인 부유식 해중철도의 합리적인 설계를 위해서는 파랑 중에 해중철도 구조체에 가해지는 유체력을 추정하여야 한다. 간편하지만 정확도 높은 유체력 추정을 위해 유체동력학 이론을 이용한 계산식을 제안하고, 수조에서 상사 모형에 대해 실험을 수행하여 비교 평가하였다. Morison식과 선형 미소진폭 파이론을 이용하여 계산된 관성력과 항력은 모형 실험 결과를 통해 계측된 유체력과 양호한 일치를 얻었다. 해중철도 구조체에 작용하는 항력은 관성력에 비해 무시할 만한 수준이었고, 파력은 파수에 따라 큰 변동을 보이지 않으나 파고에는 선형적으로 비례함을 알 수 있었다. 선형 파이론과 Morison식은 해중철도 설계 시에 간편하고 유용하게 활용될 수 있음을 확인하였다.

흐름함수파이론에 의한 파랑 에너지의 계산 (Computations of Wave Energy by Stream Function Wave Theory)

  • 이정열;편종근
    • 대한토목학회논문집
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    • 제6권2호
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    • pp.67-75
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    • 1986
  • 본 연구에서는 파랑의 에너지 및 에너지 수송과 관련된 변량들의 계산과 그 비선형효과의 분석을 능률적으로 수행하기 위하여 설계파에 대한 비선형 흐름함수파이론을 도입한다. 흐름함수파이론은 비대칭성 파형을 갖는 실측파와 이론적인 대칭 파형을 갖는 설계파. 두 경우 모두에 사용할 수 있는 이론으로 Dean에 의해 처음 창안되었다. 후에 Dalrymple이 특정한 파고의 조건과 0의 평균해수면 변위의 조건을 만족하도록 하는 두 라그란지 승수를 사용하여 기존의 수치계산 과정을 개량함으로써 수치계산이 좀 더 효율적으로 수행되도록 하였다. 그리고 흐름함수의 계수 (Stream function coeffiicient)들은 본 연구를 위해 개량한 Marquardt algorithm을 사용하여 수치계산된다. 본 연구의 결과로서 평균 위치에너지와 평균 운동에너지, 평균 전에너지의 비선형효과는$L^*/L_O$의 감소와 $H/H_B$의 증가에 한결같이 증가하여 흐름함수이론과 비교하여 선형파이론이 항상 과대평가된다. 군속도와 파장의 비선형효과는 $H/H_B$의 증가에 한결같이 증가하되 선형파이론이 항상 과소평가된다. 마지막으로 평균 전에너지 Flux의 비선형효과는 천해파(shallow-water waves)에 대해서는 선형파이론이 과대평가되고 심해파 (deep-water waves)에 대해서는 선행파이론이 과소평가되는 양면성을 지닌다.

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대형해양구조물에 작용하는 파랑하중에 관하여 (On the Wave Loads on a Large Volume Offshore Structure)

  • 홍도천;홍은영;이상무
    • 한국해양공학회지
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    • 제1권1호
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    • pp.33-38
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    • 1987
  • The first order mation responses of a floating structure and the hydrodynamic forces in regular waves are obtained by means of the linear potential theory. The first order potential is obtained directly from the numerical solution of the improved Green integral equation which is characterized by the combined surface distribution of sources and normal doublets. The mean second order wave drift force is also calculated by means of the near field method. It seems that the present method gives more accurate numerical results than other methods and the agreement between numerical and experimental results appears to be satisfactory.

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