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21.
王玉成  陈远超 《船舶工程》2015,37(S1):50-54
为了精确获得高速船的航行阻力,计及航行姿态变化对其阻力的影响。基于CFD理论,本文通过耦合求解计及黏性的RANS和船体运动方程的方式实时预报船体受力,船体根据受力进行姿态调整,最终达到平衡,以此预报船舶在高速运动稳定后的航行姿态及阻力。并将一系列的数值计算结果与试验数据对比分析,数值计算结果和实验数据吻合良好。船舶设计工作者可以参考数值计算结果辅助船体型线设计,其具有重要的工程应用价值。  相似文献   
22.
To solve the problems concerning water entry of a structure, the RANS equations and volume of fluid(VOF) method are used. Combining the user-defined function(UDF) procedure with dynamic grids, the water impact on a structure in free fall is simulated, and the velocity, displacement and the pressure distribution on the structure are investigated. The results of the numerical simulation were compared with the experimental data,and solidly consistent results have been achieved, which validates the numerical model. Therefore, this method can be used to study the water impact problems of a structure.  相似文献   
23.
针对船舶航行时的船体兴波及航态变化,采用RANS方法、VOF方法及船体六自由度运动方程,建立了考虑船体兴波及航态变化时螺旋桨激振力的计算方法。叠模、考虑船体兴波及考虑航态变化时螺旋桨推力、船底板压力计算结果的对比表明:考虑兴波及航态变化时,由于流速变化,螺旋桨推力平均值减小,船底板压力平均值增大;由于来流不均匀程度的变化,1倍叶频处峰值减小;考虑兴波及航态变化时,计算得到的激振力更加接近真实情况,但由于激振力在频域中较为接近,为节约计算量,计算时可不考虑船体兴波及航态变化。  相似文献   
24.
Even in relatively calm waters, low amplitude wave-induced motions of an LNG carrier may induce large amplitude liquid sloshing inside the ship's partially filled tanks, and the interaction between ship motions and sloshing may affect the ship's seekeeping properties. A computational procedure, here referred to as the RANS-RANS method, was developed to account for this interaction, and this method was then employed to predict the free surface flow inside the tanks and the corresponding motions of the ship in regular head and beam waves. This method coupled a compressible VoF technique with a generic wave generation and absorption scheme to obtain wave-induced ship motions with and without considering the effects of sloshing in the ship's tanks. Systematic grid studies were performed to obtain a sufficiently fine grid needed to yield converging predictions. The resulting wave patterns, ship motions, and internal sloshing elevations were compared with results obtained from a computational method, here referred to as the RANS-BEM method, that relied on a boundary element method to obtain ship motions. This RANS-RANS method was validated against model test measurements.  相似文献   
25.
同时考虑自由液面、真实螺旋桨的旋转运动,在数值水池实现了船/桨整体流场的数值计算。在既定航速下,推力与船体阻力为螺旋桨转速的函数,通过变化转速得到自航点。文中数值计算得到的自航点与物理水池试验自航点吻合良好。根据数值自航试验结果,不仅可通过积分的方法计算伴流分数与推力减额分数,还可详细分析螺旋桨进流与桨叶的速度、压力分...  相似文献   
26.
滑行艇高速航行时的数值模拟(英文)   总被引:1,自引:0,他引:1  
Planing vessels are applied widely in civil and military situations.Due to their high speed,the motion of planning vessels is complex.In order to predict the motion of planning vessels,it is important to analyze the hydrodynamic performance of planning vessels at high speeds.The computational fluid dynamic method(CFD) has been proposed to calculate hydrodynamic performance of planning vessels.However,in most traditional CFD approaches,model tests or empirical formulas are needed to obtain the running attitude of the planing vessels before calculation.This paper presents a new CFD method to calculate hydrodynamic forces of planing vessels.The numerical method was based on Reynolds-Averaged Navier-Stokes(RANS) equations.The volume of fluid(VOF) method and the six-degrees-of-freedom equation were applied.An effective process was introduced to solve the numerical divergence problem in numerical simulation.Compared with experimental results,numerical simulation results indicate that both the running attitude and hydrodynamic performance can be predicted well at high speeds.  相似文献   
27.
霍聪  董文才 《船舶工程》2016,38(3):26-30
针对一种具有半潜-水面航态变换功能的新型潜伏式高速船型,基于非稳态RANS方程组与VOF模型求解粘性流场,结合动态流域边界与滑移网格技术,对目标船在垂直面内三自由度运动及其喷水推进器叶轮随船定轴高速旋转的耦合运动进行数值模拟。结果表明:在相同主机平均转速条件下,所预报自航点体积傅氏数与自航模型试验结果的相对误差在7%以内;从半潜到水面的航态变换过程中,船体有显著的纵倾与升沉,船体主要克服压差阻力,船体兴波由相互叠加的首波、肩波、尾波逐渐发展为首尾分明的两个波系,在喷水推进器射流区内捕捉到生成和发展的高强度涡系。  相似文献   
28.
The Reynolds-averaged Navier-Stokes (RANS) method, along with the Fluent software package, was used to study the steady and unsteady interaction of propellers and rudders with additional thrust fins. The sliding mesh model was employed to simulate unsteady interactions between the blades, the rudder and the thrust fins. Based on the numerical results, the pressure distribution on the propeller and the efficiency of the fins were calculated as a function of the attack angle. The RANS results were compared with results calculated by the potential method. It was found that the results for the potential method and the RANS method have good consistency, but they yield maximum efficiencies for the fins, and thus corresponding attack angles, that are not identical.  相似文献   
29.
As a basic problem in many engineering applications, transition from laminar to turbulence still remains a difficult problem in computational fluid dynamics (CFD). A numerical study of one transitional flow in two-dimensional is conducted by Reynolds averaged numerical simulation (RANS) in this paper. Turbulence model plays a significant role in the complex flows' simulation, and four advanced turbulence models are evaluated. Numerical solution of frictional resistance coefficient is compared with the measured one in the transitional zone, which indicates that Wilcox (2006) k-ω model with correction is the best candidate. Comparisons of numerical and analytical solutions for dimensionless velocity show that averaged streamwise dimensionless velocity profiles correct the shape rapidly in transitional region. Furthermore, turbulence quantities such as turbulence kinetic energy, eddy viscosity, and Reynolds stress are also studied, which are helpful to learn the transition's behavior.  相似文献   
30.
CFD在潜艇外形方案比较中的应用   总被引:5,自引:0,他引:5  
以水滴型潜艇为母型进行改造,提出了新型椭圆截面和碟形截面的潜艇外形设计.水滴型潜艇的型值选用"大青花鱼"号的简化型值,在船长与排水量不变的条件下通过改变截面形状给出了后两种新艇型的型值,建立了计算模型.采用有限体积法求解不可压缩的雷诺平均(RANS)方程数值模拟了三种艇体周围的粘性流场,通过对三者的粘性绕流和阻力性能的比较,给出了三种方案各自的优缺点.  相似文献   
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