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1.
Prandtl’s lifting line theory was generalized to the lifting problem of a three-dimensional hydrofoil in the presence of a free surface. Similar to the classical lifting theory, the singularity distribution method was utilized to solve two-dimensional lifting problems for the hydrofoil beneath the free surface at the air-water interface, and a lifting line theory was developed to correct three-dimensional effects of the hydrofoil with a large aspect ratio. Differing from the classical lifting theory, the main focus was on finding the three-dimensional Green function of the free surface induced by the steady motion of a system of horseshoe vortices under the free surface. Finally, numerical examples were given to show the relationship between the lift coefficient and submergence Froude numbers for 2-D and 3-D hydrofoils. If the submergence Froude number is small free surface effect will be significant registered as the increase of lift coefficient. The validity of these approaches was examined in comparison with the results calculated by other methods.  相似文献   

2.
Here, a numerical optimization procedure is proposed for a fundamental study of a fast catamaran, and we compare the wave-making characteristics of a catamaran hull form with and without large bow and stern airship-type bulbs installed on the center plane of a catamaran operating at high speed. The method involves coupled ideas from two distinct research fields: numerical ship hydrodynamics and a nonlinear programming technique. The wave-making characteristics of catamaran hulls with and without bulbs were investigated using the panel method applied to free surface flow (PAFS), in which Morinos method for lifting bodies is extended to analyze the problem of free surface flow, and PAFS is linked to the optimization procedure of the sequential quadratic programming (SQP) technique. An optimum hull form for a catamaran can be obtained through a series of iterative computations, subject to some design constraints. Here, only the hull shape of a catamaran is optimized with and without center-plane bow and stern bulbs. The optimization is carried out at two Froude numbers, 0.45 and 0.5, which are around the last hump of the wave-making resistance curve. The numerical results show that a reduction in wave-making resistance is achieved around the design speed.  相似文献   

3.
陈庆任  叶恒奎  管延敏 《船舶力学》2010,14(12):1331-1339
基于格林定理,将Bankine源和偶极子置于边界面上,用时间步进法计算了近自由面条件下的三维水翼的势流场.其中在自由面采用线性自由面边界条件,在尾涡面上采用偶极子布置以满足Kutta条件.影响系数中的奇异积分及非奇异积分都采用一种精确积分的方法计算.文中确定了计算模型和参数,给出了不同航速、展长及浸深下的数值计算结果,并与相关文献结果进行了对比,证实了该方法是一种可靠、有效的时域算法.  相似文献   

4.
The iterative numerical method that has been developed for cavitating hydrofoils and surface piercing bodies moving inside a numerical towing tank is modified and extended to the case of fully submerged, both two- and three-dimensional cavitating hydrofoils in water of finite depth, and the effects of subcritical speed, critical speed and supercritical speed are investigated in detail. The iterative numerical method based on Green’s theorem allows separating the cavitating hydrofoil problem, the free surface problem and finite bottom problem both in two and three dimensions. The cavitating hydrofoil surface, the free surface and the surface of finite bottom are modeled with constant strength dipole and constant strength source panels. While the kinematic boundary condition is applied on the hydrofoil surface, a dynamic condition is applied with a cavity closure condition on the cavity surface. The source strengths on the free surface are expressed in terms of perturbation potential by applying the linearized free surface conditions. No radiation condition is enforced for downstream and transverse boundaries. The source strengths on the bottom surface are zero because of vanishing normal velocity. The method is applied to 2D and 3D cavitating hydrofoils, and the effect of finite bottom on lift and drag coefficients, cavity number and wave elevation is investigated.  相似文献   

5.
DTMB5415驱逐舰绕流的数值模拟   总被引:12,自引:4,他引:8  
本文采用RANS方程及RNG湍流模型数值模拟了带方尾及声纳罩的5415驱逐舰绕流,计算结果表明对复杂的实际船形,CFD能有效地预报船体周围流场、波形和阻力等船舶设计感兴趣的水动力性能参数,为船形分析及优化提供了有力的工具。  相似文献   

6.
绕船体自由表面流的数值模拟   总被引:16,自引:3,他引:13  
本文采用RANS方程和VOF算法数值模拟了系列60粘性自由面流动,比较了幂指数律,二阶迎风,QUICK格式对计算结果的影响,详细给出了波形,阻力,伴流等的计算结果,与试验及其它计算结果比较显示本文的计算方法具有较好的计算精度,可用于船型性能分析和优化。  相似文献   

7.
首升力体技术已被CFD、缩比模型试验、实船试验证实,在零航速与有航速情况下均可降低船舶运动,提高船舶耐波性.本文采用VOF方法捕捉自由液面,对有自由液面情况下,不同攻角、不同浸深和不同航速的首升力体,计算了首升力体的升力、阻力和自由面兴波等.  相似文献   

8.
The relatively high rates of bulk carrier casualties in recent years, as well as structural features such as large deck openings, make this vessel type a suitable example for investigating the influence of hydroelastic modelling on predicting wave-induced loads and responses. Two- and three-dimensional fluid–flexible structure interaction models, due to their different degree of complexity and associated data requirements, can be used at different stages of the design process when estimating wave-induced loads, namely preliminary and detailed design stages, respectively.

In this paper, therefore, two- and three-dimensional hydroelasticity theories are applied to predict and compare the dynamic behaviour of a bulk carrier hull, based on OBO MV Derbyshire, in waves. Both symmetric and antisymmetric motions and distortions are incorporated in these investigations. The three-dimensional structural model consists entirely of shell finite elements, representing all major external and internal structural components, whilst the two-dimensional model is generated using Timoshenko beam finite element and finite difference discretisations. Issues relevant to the structural modelling stage, for both idealisations, are discussed. The in vacuo dynamic characteristics are compared for all models, with particular emphasis on the influence of hatch openings, shear centre and warping on the antisymmetric dynamics of the structure. For the wet analysis the fluid–flexible structure interaction is carried out using two-dimensional (Timoshenko beam and strip theory) and three-dimensional (beam and shell finite element idealisations combined with potential flow analysis based on pulsating source distribution over the mean wetted surface) analyses. Comparisons are made between steady-state responses predicted by two- and three-dimensional models in bow quartering regular waves.

It is shown that whereas the predicted symmetric dynamic responses obtained from two- and three-dimensional models are in good agreement, differences are observed for the antisymmetric dynamic characteristics. It is thought that this may be due to inadequacies in the beam models employed when simulating the global dynamic behaviour of this highly non-prismatic hull girder whilst allowing for the effects of warping.  相似文献   


9.
一种计算水翼水动力的三维面元法   总被引:1,自引:1,他引:0  
汪淳  邹早建 《船舶力学》2001,5(3):18-25
本文用Rankine奇点面元法计算了深、浅水中三维水翼的定常升力绕流。水翼的厚度和升力效应分别以水翼表面分布的Rankine源和法向偶极子来模拟,在自由表面上也分布Rankine源,通过满足相应的边界条件和尾缘处的Kutta条件求出这些奇点强度。以在自由表面下作小攻角定常运动的水翼为例进行了计算,计算结果与试验结果和其他计算结果作了比较。  相似文献   

10.
李森  张磊 《船舶工程》2020,42(5):118-122
针对自升式平台升降装置长期依赖进口的现状,自主设计研发了400英尺及以上作业水深的自升式平台电动齿轮齿条传动升降装置,并对其关键部件爬升齿轮进行了重点设计及强度分析。通过DNV及相关规范与有限元结果对比的方法对升降装置关键部位在风暴自存工况下进行强度校核,分析其结构强度性。根据方案设计生产升降装置样机,并对试验样机并进行了载荷试验、疲劳试验,试验结果表明,该装置符合设计和使用要求,为自升式平台升降装置设计提供指导与参考。  相似文献   

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