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1.
Prediction of Stabilization of Ship in Random Wave   总被引:1,自引:0,他引:1  
In this paper we show thc method of energy in part with which we can get the model of random wave,and predict theroll motion of unstabilized ship and stabilized ship using the wave model.The control parameters of fin stabilizer are determinedaccording to the performance index. The simulation of the system is also made in this paper. The comparison of the simulationwith real ship indicates that the method can be used in the prediction of roll motion of a stabilized ship in random wave.  相似文献   

2.
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   

3.
This paper presents a study on the numerical simulation of planing crafts sailing in regular waves. This allows an accurate estimate of the seas keeping performance of the high speed craft. The simulation set in six-degree of freedom motions is based on the Reynolds averaged Navier Stokes equations volume of fluid (RANSE VOF) solver. The trimming mesh technique and integral dynamic mesh method are used to guarantee the good accuracy of the hydrodynamic force and high efficiency of the numerical simulation. Incident head waves, oblique waves and beam waves are generated in the simulation with three different velocities (Fn =1.0, 1.5, 2.0). The motions and sea keeping performance of the planing craft with waves coming from different directions are indicated in the flow solver. The ship designer placed an emphasis on the effects of waves on sailing amplitude and pressure distribution of planing craft in the configuration of building high speed crafts.  相似文献   

4.
The purpose of this research study was to examine the attitude response of a planing craft under the controllable hydrofoils.Firstly,a non-linear longitudinal attitude model was established.In the mathematical model,effects of wind loads were considered.Both the wetted length and windward area varied in different navigation conditions.Secondly,control strategies for hydrofoils were specified.Using the above strategies,the heave and trim of the planing craft was adjusted by controllable hydrofoils.Finally,a simulation program was developed to predict the longitudinal attitudes of the planing craft with wind loads.A series of simulations were performed and effects of control strategies on longitudinal attitudes were analyzed.The results show that under effects of wind loads,heave of fixed hydrofoils planing craft decreased by 6.3%,and pitch increased by 8.6% when the main engine power was constant.Heave decreased by less than 1% and trim angle decreased by 1.7% as a result of using variable attack angle hydrofoils;however,amplitude changes of heave and pitch were less than 1% under the control of changeable attack angle hydrofoils and longitudinal attitude.  相似文献   

5.
6.
Aircraft flying close to the ground benefit from enhanced efficiency owing to decreased induced drag and increased lift. In this study, a mathematical model is developed to simulate the takeoff of a wing near the ground using an Iterative Boundary Element Method(IBEM) and the finite difference scheme. Two stand-alone sub-codes and a mother code, which enables communication between the sub-codes, are developed to solve for the self-excitation of the Wing-In-Ground(WIG) effect. The aerodynamic force exerted on the wing is calculated by the first sub-code using the IBEM, and the vertical displacement of the wing is calculated by the second sub-code using the finite difference scheme. The mother code commands the two sub-codes and can solve for the aerodynamics of the wing and operating height within seconds. The developed code system is used to solve for the force, velocity, and displacement of an NACA6409 wing at a 4° Angle of Attack(AoA) which has various numerical and experimental studies in the literature. The effects of thickness and AoA are then investigated and conclusions were drawn with respect to generated results. The proposed model provides a practical method for understanding the flight dynamics and it is specifically beneficial at the pre-design stages of a WIG effect craft.  相似文献   

7.
This paper discusses the numerical modeling of the dynamic coupled analysis of the floating platform and mooring/risers using the asynchronous coupling algorithm with the purpose to improve the computational efficiency when multiple lines are connected to the platform. The numerical model of the platform motion simulation in wave is presented. Additionally, how the asynchronous coupling algorithm is implemented during the dynamic coupling analysis is introduced. Through a comparison of the numerical results of our developed model with commercial software for a SPAR platform, the developed numerical model is checked and validated.  相似文献   

8.
In the exploitation of ocean oil and gas, many offshore structures may be damaged due to the severe environment, so an effective method of diagnosing structural damage is urgently needed to locate the damage and evaluate its severity. Genetic algorithms have become some of the most important global optimization tools and been widely used in many fields in recent years because of their simple operation and strong robustness. Based on the natural frequencies and mode shapes of the structure, the damage diagnosis of a jacket offshore platform is attributed to an optimization problem and studied by using a genetic algorithm. According to the principle that the structural stiffness of a certain direction can be greatly affected only when the brace bar in the corresponding direction is damaged, an improved objective function was proposed in this paper targeting measurement noise and the characteristics of modal identification for offshore platforms. This function can be used as fitness function of a genetic algorithm, and both numerical simulation and physical model test results show that the improved method may locate the structural damage and evaluate the severity of a jacket offshore platform satisfactorily while improving the robustness of evolutionary searching and the reliability of damage diagnosis.  相似文献   

9.
For a large floating vessel in waves,radiation damping is not an accurate prediction of the degree of roll unlike other degrees of freedom motion.Therefore,to get the knowledge of roll motion performance of deepwater pipelay crane vessels and to keep the vessel working safety,the paper presents the relationship between a series of dimensionless roll damping coefficients and the roll response amplitude operator(RAO).By using two kinds of empirical data,the roll damping is estimated in the calculation flow.After getting the roll damping coefficient from the model test,a prediction of roll motion in regular waves is evaluated.According to the wave condition in the working region,short term statistics of roll motion are presented under different wave parameters.Moreover,the relationship between the maximal roll response level to peak spectral wave period and the roll damping coefficient is investigated.Results may provide some reference to design and improve this kind of vessel.  相似文献   

10.
Mathematical models simulating steep waves at a focus point are presented in this paper. Simulations of extreme waves in a model basin were used to determine the loads on floating structures induced by the waves. Based on a new wave theory, numerical test results show that the simulation procedure is effective and the induced motion of water particles in the front of waves is an important factor influencing impact loads on floating bodies.  相似文献   

11.
本文基于计算流体力学软件FLUENT,编制了耦合求解滑行艇纵向运动预报程序,开展了三维滑行艇模型在风载荷作用下运动响应的数值预报。重点分析了风载荷对滑行艇升沉、纵摇运动和升力、阻力的影响,定量给出了风载荷引起的阻力占总阻力的比重。  相似文献   

12.
基于水动力分析的高速滑行艇阻力估算   总被引:1,自引:0,他引:1  
许蕴蕾  由丹丹 《船舶》2009,20(4):4-7
针对滑行艇高速航行的运动特性进行其动态阻力的估算研究。首先通过分析滑行艇在高速航行时艇体受到的各种水动力,建立其六自由度操纵性数学模型,并利用四阶龙格一库塔法解算滑行艇的运动姿态。然后计算滑行艇高速航行时的动态阻力,所得结果与船模试验数据吻合较好,并对各种滑行阶段的运动特性进行分析,结果表明基于水动力分析的阻力估算方法具有较强的工程实用性。  相似文献   

13.
许蕴蕾 《船舶》2011,22(1):21-25
针对喷水推进滑行艇的高速滑行原理,建立了其非线性的纵向运动数学模型。首先分析了滑行艇在高速滑行过程中的受力,详细地推导了艇体受到的重力、浮力和动升力,并根据喷水推进器的工作原理,推导了喷水推进力的表达式;然后建立了喷水推进滑行艇的非线性纵向运动数学模型;最后设计了基于该模型的滑行艇纵向运动预报软件,并进行了高速滑行的操纵性仿真试验,仿真结果与船模试验数据吻合较好,表明了该模型能够较准确的预报喷水推进滑行艇在静水中的纵向运动。  相似文献   

14.
滑行艇阻力近似计算方法对比研究   总被引:4,自引:0,他引:4  
结合滑行艇阻力理论的研究动态,采用查洁法和SIT法对美国滑行艇系列62中4667-1的阻力、浸湿面积、平均浸湿长度以及纵倾角进行研究,得到这两种方法的精度及适用范围。同时,还指出查洁法及SIT法能满足滑行艇起滑阶段的阻力预报,并编制了滑行艇阻力理论预报程序和软件界面,以为滑行艇初步设计阶段方案优选提供有力的工具。  相似文献   

15.
水气双重介质共同作用下滑行艇纵向运动预报   总被引:2,自引:0,他引:2  
为探究滑行艇水气双重介质共同作用下的运动响应情况,针对喷水推进滑行艇的高速运动原理,建立水气双重介质作用下滑行艇非线性的纵向运动数学模型。分析滑行艇在水气双重介质共同作用下滑行过程中的受力特性,确定艇体受到的重力、浮力、动升力和风压阻力等,改进受风面积和风压力臂的计算方法,提出实时计算滑行艇浸湿长度的计算公式。编写滑行艇纵向运动预报程序,并对不同工况下滑行艇运动的预报结果予以了分析。结果显示,当主机输出功率一定时,计入空气比不计入空气时的航速下降5.1%,升沉量下降0.006 m,纵摇角抬升0.2°,阻力增加1 893 N,动升力减小404 N;而计入风的阻力对滑行艇的运动影响较大,航速下降15.3%,纵摇角增加0.6°,升沉量下降0.021 m,动升力下降1 139 N,阻力增加5 472 N。  相似文献   

16.
基于灰色动态MGM(1,n)模型的舰船纵摇-升沉运动预报   总被引:2,自引:0,他引:2  
舰船在实际海况中的运动因受到各种因素的影响而非常复杂,六个自由度之间相互耦合构成一个复杂的系统,因此建立描述舰船运动的系统模型并对各自由度运动进行实时预报具有非常重要的意义.灰色MGM(1,n)模型用微分方程的形式表现了一个系统中n个因素对某个因素变化率的影响,可以用于对非线性复杂系统的系统预测.通过对灰色系统理论的学习发现对原始数据用极差变换进行预处理后会更适合MGM(1,n)模型的拟合,为模型预测打下了良好的基础.在充分的理论研究基础上,本文对船模水池试验获得的纵摇、升沉运动数据以及海浪数据进行极差变换后建立灰色MGM(1,n)模型,并对纵摇、升沉进行非线性预报,得到了较好的效果.  相似文献   

17.
针对因高原缺氧导致滑行艇动力不足无法起滑的问题,提出一种通过额外补充氧气来短时提高柴油机功率以帮助滑行艇越过阻力峰的方案。在热力学基本公式基础上引入Assanis关于富氧燃烧的热释放关系,提出了一种富氧燃烧的线性近似解方法。再利用AVL fire进行CFD计算,模拟计算缸内燃烧情况。计算结果表明,随着进气氧气浓度的增加,柴油机放热量和缸内压力均有提高,功率也同步提高,从而验证了该方案的可行性,为其实用化进行了基础性探索。  相似文献   

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