• 제목/요약/키워드: Slender-body theory

검색결과 35건 처리시간 0.024초

Non-dimensional analysis of cylindrical objects freely dropped into water in two dimensions (2D)

  • Zhen, Yi;Yu, Xiaochuan;Meng, Haozhan;Li, Linxiong
    • Ocean Systems Engineering
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    • 제10권3호
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    • pp.267-287
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    • 2020
  • The dropped objects are identified as one of the top ten causes of fatalities and serious injuries in the oil and gas industry. It is of importance to understand dynamics of dropped objects under water to accurately predict the motion of dropped objects and protect the underwater structures and facilities from being damaged. In this paper, we study non-dimensionalization of two-dimensional (2D) theory for dropped cylindrical objects. Non-dimensionalization helps to reduce the number of free parameters, identify the relative size of effects of force and moments, and gain a deeper insight of the essential nature of dynamics of dropped cylindrical objects under water. The resulting simulations of dimensionless trajectory confirms that drop angle, trailing edge and drag coefficient have the significant effects on dynamics of trajectories and landing location of dropped cylindrical objects under water.

p-Version 적층모델을 통한 팻취 보강된 강판의 선형탄성파괴역학 해석 (LEFM Analysis of Patch Repaired Steel Plates by p-Version Layer Model)

  • 한상현;신영식;우광성
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2007년도 정기 학술대회 논문집
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    • pp.487-492
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    • 2007
  • The enhancement of the service life of damaged or cracked structures is a major issue for researchers and engineers. The hierarchical void element with the integrals of Legend polynomials is used to characterize the fracture behavior of unpatched crack as well as repaired crack with bonded composite patches by computing the stress intensity factors and stress contours at the crack tip. The numerical approach is based on the v-version degenerate shell element including the theory of anisotropic laminated composites. Since the equivalent single layer approach is adopted in this study, the proposed element is necessary to represent a discontinuous crack part as a continuum body with zero stiffness of materials. Thus the aspect ratio of this element to represent the crack should be extremely slender. The sensitivity of numerical solution with respect to energy release rate, displacement and stress has been tested to show the robustness of hierarchical void element as the aspect ratio is increased up to 2000. The stiffness derivative method and displacement extrapolation method have been applied to calculate the stress intensity factors of Mode I problem.

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Manta형 무인잠수정의 부가물 형상에 따른 동유체력 특성에 관한 연구 (A Study on Hydrodynamic Force Characteristics of Manta-type Unmanned Undersea Vehicle with the Parameter of Appendage Shape)

  • 배준영;손경호
    • 한국항해항만학회지
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    • 제33권5호
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    • pp.309-314
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    • 2009
  • Manta형 무인잠수정(MUUTV)을 대상으로 회류수조에서의 모형실험을 통해 동일한 동체 모형에 대해 형상이 서로 다른 부가물을 부착했을 때의 동유체력 특성을 실험적으로 검토하였으며, 동유체력 측정 결과를 이론계산치와 비교하였다. 아울러 이를 바탕으로 운동안정성을 검토하여 최적의 부가물 형상 결정의 이론적 근거를 확립하였다.

Manta형 무인잠수정의 부가물 형상에 따른 동유체력 특성에 관한 연구 (A Study on Hydrodynamic Force Characteristics of Manta-type Unmanned Undersea Vehicle with the Parameter of Appendage Shape)

  • 배준영;손경호
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2009년도 공동학술대회
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    • pp.5-6
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    • 2009
  • Manta형 무인잠수정(MUUTV)을 대상으로 회류수조에서의 모형실험을 통해 동일한 동체 모형에 대해 형상이 서로 다른 부가물을 부착했을 때의 동유체력 특성을 실험적으로 검토하였으며, 동유체력 측정 결과를 이론계산치와 비교하였다. 아울러 이를 바탕으로 운동안정성을 검토하여 최적의 부가물 형상 결정의 이론적 근거를 확립하였다.

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인장계류식 해양구조물의 구조응답에 미치는 굽힘강성의 영향 (Effects of the Flexibility on the Structural Responses of a Tension Leg Platform)

  • 이창호;이수룡
    • 한국해양공학회지
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    • 제21권4호
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    • pp.38-44
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    • 2007
  • The structural response characteristics of Tension leg platforms(TLPs) in waves are examined for presenting the basic data for structural design of TLPs. The numerical approach is based on a combination of the three dimensional source distribution method and the structural response analysis method, in which the superstructure of TLP is assumed to be flexible instead of rigid. Hydrodynamic and hydrostatic forces on the submerged surface of a TLP have been accurately calculated by excluding the assumption of the slender body theory. The hydrodynamic interactions among TLP members, such as columns and pontoons, and the structural damping are included in structural analysis. The mooring forces are estimated as the sum of pretension of tendons and variational tension due to longitudinal displacements. Stiffness matrices of elastic beam elements connecting nodes are formulated by ordinary method of three dimensional frame analysis. The equation of motion about the whole structure is obtained by the sum of forces and moments acting on each nodes.

인장계류식 해양구조물의 동적응답해석(II) (A dynamic response Analysis of Tension Leg Platforms in Waves (II))

  • 구자삼;박찬후;이창호
    • 한국해양공학회지
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    • 제10권1호
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    • pp.25-35
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    • 1996
  • A numerical procedure is described for predicting the motion and structural responses of tension leg platforms(TLPs) in waves. The developed numerical approach is based on a combination of a three dimensional source distribution method and the dynamic response analysis method, in which the superstructure of TLPs is assumed to be flexible instead of rigid. Restoring forces by hydrostatic pressure on the submerged surface of a TLP have been accurately calculated by excluding the assumption of the slender body theory. The hydrodynamic interactions among TLP members, such as columns and pontoons, and the structural damping are included in the motion and structural analysis. The equations of motion of a whole structure are formulated using element-fixed coordinate systems which have the orgin at the nodes of the each hull element and move parallel to a space-fixed coordinate system. Numerical results are compared with the experimental and numerical ones, which are obtained in the literature, concerning the motion and structural responses of a TLP in waves. The results of comparison confirmed the validity of the proposed approach.

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Coupled CFD-FEM simulation of hydrodynamic responses of a CALM buoy

  • Gu, Haoyuan;Chen, Hamn-Ching;Zhao, Linyue
    • Ocean Systems Engineering
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    • 제9권1호
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    • pp.21-42
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    • 2019
  • In this paper, the Finite-Analytic Navier-Stokes (FANS) code is coupled with an in-house finite-element code to study the dynamic interaction between a floating buoy and its mooring system. Hydrodynamic loads on the buoy are predicted with the FANS module, in which Large Eddy Simulation (LES) is used as the turbulence model. The mooring lines are modeled based on a slender body theory. Their dynamic responses are simulated with a nonlinear finite element module, MOORING3D. The two modules are coupled by transferring the forces and displacements of the buoy and its mooring system at their connections through an interface module. A free-decay model test was used to calibrate the coupled method. In addition, to investigate the capability of the present coupled method, numerical simulations of two degree-of-freedom vortex-induced motion of a CALM buoy in uniform currents were performed. With the study it can be verified that accurate predictions of the motion responses and tension responses of the CALM buoy system can be made with the coupling CFD-FEM method.

저속 횡 이동하는 선박의 선체에 작용하는 유체력에 관한 연구 (A Study of Hydrodynamic Forces Acting on a Ship Hull Under Lateral Low Speed Motion)

  • 이윤석;김순갑
    • 한국항해학회지
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    • 제23권2호
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    • pp.29-42
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    • 1999
  • An accurate method of estimating ship maneuverability needs to be developed to evaluate precisely and improve the maneuverability of ships according to the water depth. In order to estimate maneuverability by a mathematical model. The hydrodynamic forces acting on a ship hull and the flow field around the ship in maneuvering motion need to be estimated. The ship speed new the berth is very low and the fluid flow around a ship hull is unsteady. So, the transient fluid motion should be considered to estimate the drag force acting on the ship hull. In the low speed and short time lateral motion, the vorticity is created by the body and grow up in the acceleration stage and the velocity induced by the vorticity affect to the body in deceleration stage. For this kind of problem, CFD is considered as a goof tool to understand the phenomena. In this paper, the 2D CFD code is used for basic consideration of the phenomena to solve the flow in the cross section of the ship considering the ship is slender and the water depth is large enough. The flow fields Added and hydrodynamic forces for the some prescribed motions are computed and compared with the preliminary experiment results. The comparison of the force with measurement is shown a fairly good agreement in tendency. The 3D Potential Calculation based on the Hess & Smith Theory is employed to predict the surge, sway added mass and yaw added moment of inertia of hydrodynamic coefficients for M/V ESSO OSAKA according to the water depth. The results are also compared with experimental data. Finally, the sway added mass of hydrodynamic coefficients for T/S HANNARA is suggested in each water depth.

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초고속 쌍동선에 대한 내항성능 해석 방법 비교 (스트립 방법과 3-D Panel 방법) (The Comparison of Seakeeping Performance Analysis Methods for a High Speed Catamaran (Strip and 3-D Panel Method))

  • 이호영;송기종;염덕준
    • 대한조선학회논문집
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    • 제33권2호
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    • pp.127-138
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    • 1996
  • 고속선의 내항성능 해석 방법으로 스트립 방법, 통합이론(Unified theory), 3차원 판넬 방법등이 널리 사용되고 있다. 스트립 이론은 2차원적 해석 방법으로 전진속도가 빠른 경우나 추파중 저주파수 영역에서 유체력 계수와 운동응답이 정확하지 않으며, 통합이론은 내부영역에서는 2차원적 해석을 사용하고 외부영역은 세장체 이론을 사용하여 해석하는 방법으로 수학적으로 복잡한 단점이 있다. 3차원 판넬 방법을 이용한 해석은 계산 시간이 오래 걸리지만 고속인 경우에 모든 주파수 영역에서 정확한 해를 주는 것으로 알려져 있고, 전산기의 급속한 발달과 더불어 가장 권장되는 방법이다. 본 논문에서는 고속선의 해석에 전통적으로 사용되고 있는 스트립 법에 의한 해석과 3차원 판넬 방법을 이용한 해석법을 비교한다. 3차원 판넬 방법에 의한 해석은 쏘오스 분포법과 전진하면서 동요하는 그린 함수를 사용하고, 그린 함수의 수치, 계산은 Hoff의 방법을 이용하였고, 그린 함수는 종축에 대한 대칭 관계를 이용하여 계산 시간을 줄였다. 계산에 사용된 선종은 카타마란(Catamaran) 형태의 고속선이며 상기 두 방법에 의해 구해진 유체력 계수, 파강제력과 주파수 응답함수 등을 비교하였고, 또한 불규칙파중 운동응답의 계산 결과를 비교 검토해 보았다.

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항만내 파도응답과 계류선박의 운동해석(I) (Wave Responses and Ship Motions in a Harbor Excited by Long Waves(I))

  • 조일형;최항순
    • 대한조선학회논문집
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    • 제29권2호
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    • pp.38-47
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    • 1992
  • 본 연구에서는 항만내 파도응답과 항만안에 계류된 선박의 운동응답을 선형포텐셜이론으로 해석하고 모형시험을 수행하여 항만공진문제의 물리적 특성과 항만내 계류된 선박의 운동특성을 밝혔다. 유체영역을 해양과 항만영역으로 나누어 각 영역에서 경계치문제를 독립적으로 푼 다음, 두 영역의 해를 항만입구에서 정합하여 미지수를 구함으로써 선박에 입사하는 항만내 파도응답을 유도하였다. 선박에 작용하는 파기진력을 계산하고 선체운동에 따르는 동유체력을 해석하였다 얻어진 유체력을 이용하여 운동방정식을 풀어 선박의 운동변위를 구하였다. 사각형 항만안에 계류된 선박의 운동응답에 대한 실험을 수행한 결과 계산치와 실험치는 정성적으로 서로 비슷한 경향을 보이나 정량적으로 차이를 보이고 있음을 확인하였다. 여기서는 우선 선체운동중 대칭운동(전후동요-수직동요-종동요)만을 취급하였다. 비대칭운동(좌우동요-횡동요-선수동요)과 실험결과는 다음 기회에 발표할 예정이다.

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