共查询到20条相似文献,搜索用时 31 毫秒
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本文基于OpenFOAM,对双体船月池中在不同流速下形成的流体共振进行数值模拟。通过与文献中实验和数值结果的比较,验证了该模型的准确性。数值模拟表明,当傅汝德数Fn=0.04和0.08时,流速对共振振幅的影响会减小。当Fn=0.12时,可观察到月池入口附近的速度场与涡流发生显著变化,这导致共振振幅的影响增加。即流速较小时可减小共振振幅,随着流速的增加,月池入口附近区域的流体形态发生显著变化,这种变化会增加对共振振幅的影响。 相似文献
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为了规避钻井船月池内发生共振情况带来的危险,本文采用势流理论和CFD数值模型相结合的方式,对钻井船的水动力性能和月池内流体运动进行研究。在入射波为月池共振周期的情况下,将船体有无耦合运动时月池内流体的不同运动进行比较研究,得出船体运动会增大月池内流体运动的结论。 相似文献
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The research purpose of this paper is to estimate theimpacts of the parameters of the guide plate on the vertical motioncharacteristics of the moonpool fluid. With the volume of fluid(VOF) method, three-dimensional models of the moonpool fluidmotions of the truss spar platform are established. Simulationresults are then presented for the moonpool forced oscillation byemploying the dynamic mesh method and user-defined functions inFLUENT. The motions of the moonpool fluid and the loads on theguide plates are obtained for both cases of square-ring andcrisscross. The results show that the shape and area of the guideplate at the bottom of the moonpool have a significant impact onthe physical parameters of the moonpool, including the load on themoonpool guide plate, motion form of the moonpool fluid and themass flow rate. 相似文献
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基于CFD的钻井船月池流场及附加阻力研究 总被引:1,自引:0,他引:1
研究了基于CFD方法的钻井船月池流场及阻力性能。针对某阶梯型月池的钻井船,采用定常方法分析其阻力性能,并与模型试验结果进行比较,分析钻井船月池阻力数值计算方法的可靠性;采用非定常方法模拟月池内流体的非定常流动,分析月池附加阻力产生的原因。计算方法及所得出的结论可为具有月池的船舶阻力性能研究提供参考。 相似文献
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能量耗散效应的多域边界元法(英文) 总被引:1,自引:0,他引:1
段文洋 《船舶与海洋工程学报》2012,11(1):18-23
The wave diffraction and radiation around a floating body is considered within the framework of the linear potential theory in a fairly perfect fluid.The fluid domain extended infinitely in the horizontal directions but is limited by the sea bed,the body hull,and the part of the free surface excluding the body waterplane,and is subdivided into two subdomains according to the body geometry.The two subdomains are connected by a control surface in fluid.In each subdomain,the velocity potential is described by using the usual boundary integral representation involving Green functions.The boundary integral equations are then established by satisfying the boundary conditions and the continuous condition of the potential and the normal derivation across the control surface.This multi-domain boundary element method(MDBEM) is particularly interesting for bodies with a hull form including moonpools to which the usual BEM presents singularities and slow convergence of numerical results.The application of the MDBEM to study the resonant motion of a water column in moonpools shows that the MDBEM provides an efficient and reliable prediction method. 相似文献
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Evaluation of added resistance in regular incident waves by computational fluid dynamics motion simulation using an overlapping grid system 总被引:2,自引:0,他引:2
A computational fluid dynamics simulation method called WISDAM-X was developed to evaluate the added resistance of ships in waves. The Reynolds-averaged Navier–Stokes (RANS) equation was solved by the finite-volume method and a MAC-type solution algorithm. An overlapping grid system was employed to implement rigorous wave generation, the interactions of ships with incident waves, and the resultant ship motions. The motion of the ship is simultaneously solved by combining the solution of the motion of the ship with the solution of the flow about the ship. The free surface is captured by treatment by the density-function method. The accuracy of WISDAM-X is examined by a comparison with experimental data from a container carrier hull form, and shows a fairly good agreement with respect to ship motion and added resistance. Simulations were also conducted for a bow-form series of a medium-speed tanker to examine the effectiveness of the WISDAM-X method as a design tool for a hull form with a smaller resistance in waves. It was confirmed that the WISDAM-X method can evaluate the added resistance with sufficient relative accuracy and can be used as a design tool for ships. 相似文献
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文章分析一种新型超机动飞碟形的自主式潜水器—水下直升机的运动稳定性,以实现其在海底复杂的作业任务。采用AYASYS-CFX计算流体力学的仿真模拟技术,分析飞碟形的水下直升机在水平面的机动性和垂直面的运动稳定性等水动力关键技术问题。采用多种数值水池模拟的方法,包括直(斜)航运动和圆池旋臂运动等模拟方法,以计算水下直升机的水动力的稳定性导数、水动力(矩)、随攻角变化的压力中心和阻升比等。在设计航速1 kn的情况下,采用Routh线性水动力导数组成的运动稳定性数学模型,分析其水平及垂直面上的运动稳定性。计算结果说明,水下直升机在水平面上回转运动具有战术直径接近零的超机动能力,同时,在垂直面上具有优于传统鱼雷形潜水器的运动稳定性。 相似文献