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1.
浅水不规则波浪中油轮运动研究   总被引:8,自引:2,他引:6  
本文对一般油轮在浅水不规则波浪中六自由度运动进行了试验分析,并对其碰底情况做了研究。试验时对有流情况下不同波高、不同装载的条件进行了分析比较。模型的六自由度运动是用非接触式六自由度运动测量与分析方法求得。该方法应用位置测量仪(PSD)对安置在模型上的红外线发光源(LED)进行测量,然后所编制的软件计算出模型的六个自由度运动情况。  相似文献   

2.
针对海洋模拟平台接触式测量方法精度低的问题,提出了适用于"海洋移动式平台"水池模型试验的非接触式测量方法并详细阐述了实时异步触发同步抓取图像功能的实现及两步法标定过程.该方法基于机器视觉原理使用双 CCD 进行平台的运动监测,利用标定内外参数来重构物体空间坐标,并由此分解浮体六自由度运动的信息.最后给出了测试结果.结果表明:所提算法在分析精度方面有了较大的提高.  相似文献   

3.
在Fudide-Krylov假设条件下,依据船舶分离建模理论在固定和运动坐标系中计算海面船只六自由度运动数学模型。主要包括:对风、浪、流的单独建模并进行矢量叠加,并在风浪流联合作用下对船舶六自由度运动构建简化的数学建模,完成实时仿真。基于Simulink和V-Realm Builder虚拟现实技术创建船舶运动模型、海洋表面环境及船只的几何模型,对船舶六自由度运动进行视景仿真,给出了有风无浪、有浪无风和风浪兼有三种情况下船只旋回路径和船舶运动轨迹。在VR视景浏览器中创建动态海面上船舶六自由度运动模型,不仅易于实现且结果逼真。得到的结果为进一步研究动态船只目标声散射特性的精确预报提供基础。  相似文献   

4.
主动式声纳列阵拖曳系统姿态数值计算   总被引:2,自引:1,他引:2  
卢军 《海洋工程》2001,19(3):85-90
主动式声纳列阵拖曳系统是用于探测潜艇的新型声纳系统,为了准确探测潜艇的位置,必须首先预报声纳列阵的瓷态,本文通过对其三维力学模型的分析,得到该系统的运动微分方程,其中缆索的力学方程是基于Ablow和Milinazzo的模型,而对于拖体则运用六自由度空间运动方程模拟,结合边界条件,用有限差分法求解,通过对拖船的不同运动状态如匀速,变速和回转的计算,证明本文的方法对于预报声纳列阵的姿态是有效的。  相似文献   

5.
由于海洋平台现场实测受到种种客观和主观因素的制约,国内外相关研究很少.“南海奋进号”FPSO开展了长达25个月的实测试验,测量了FPSO六个自由度的运动.对该FPSO在2008年和2009年的运动数据进行统计分析,总结了“南海奋进号”FPSO在这两年不同季节中的运动规律,弥补了中国在海洋工程浮式结构物的运动及载荷实地测量技术方面的空白.  相似文献   

6.
考虑多种非线性因素的张力腿平台动力响应   总被引:1,自引:1,他引:1  
建立了一种考虑多种非线性因素的张力腿平台(TLP)分析模型,其中包括六自由度有限位移,各自由度之间的耦合,瞬时湿表面,瞬时位置,自由表面效应及粘性力等因素引起的非线性。推导出TLP六自由度非线性运动方程。对某典型张力腿平台ISSC TLP进行了时域上的数值计算,求得该平台在规则波作用下的六自由度运动响应。用退化到线性范围的解与已有解进行了对比,吻合良好。数值结果表明,综合考虑非线性因素后响应明显改变,建议在设计TLP平台的时候,考虑非线性因素的影响。  相似文献   

7.
随着对水下机器人研究的逐步深入,其运动能力已由早期单纯的平动逐步强化为有多个自由度的空间运动,对其进行动力学研究是进行其它方面能力研究的基础。为研究多自由度水下机器人的运动,对某型八推进器水下机器人进行了动力学方程建模,得出了其在6个自由度上的运动方程,在此基础上,对其进行了运动仿真及性能分析,得到了该型水下机器人在6个自由度上的运动性能。通过仿真计算的结果,可以直观地了解其运动能力。  相似文献   

8.
浮子的能量收集效率对于装置发电效率的提升具有重要作用。针对传统浮子式装置仅具有一个自由度的问题,提出了一种新型六自由度波浪能装置。基于线性波理论和MMG(Ship Manoeuvring Mathematical Model Group)方法,建立了新型装置的水动力学模型。分析了此装置的浮子在线性波浪作用下的位移和速度。结果表明:新型六自由度装置可以同时收集浮子六自由度方向的动能,具有较高的波浪能收集效率。另外,浮子在垂荡方向上的动能远大于横荡、纵荡方向上的动能。分析了波浪能收集效率随波浪遭遇角与弹簧系数之间的变化规律,文中工作为新型波浪能装置的优化设计提供了有益参考。  相似文献   

9.
半潜平台在复杂海洋环境作用下,会发生不规则的六自由度运动响应。这种平台运动的不规则性和随机性对平台作业、栈桥控制以及直升机起落等造成极大的不确定和未知风险。因此,在极短期内准确快速预报平台运动响应对深海浮式平台作业和设备安全具有重要的实际意义。然而目前针对浮式平台运动响应的计算主要是基于势流理论,对确定波浪激励下的平台一阶运动和二阶慢漂运动进行求解,计算的时效性不能满足实际需求。此外,还需要对入射波浪时历进行准确预报,导致平台运动响应准确计算更加困难。针对上述难题,提出了基于EMD-LSTM模型进行平台运动极短期预报的方法。该方法以半潜平台模型试验数据为研究对象,首先对平台运动响应的时间序列进行预处理,接着采用经验模态分解算法(EMD)将时间序列分解成相对平稳的分量,再利用长短期记忆(LSTM)神经网络可以处理复杂非线性长时间序列的优点,对时间序列进行训练预测,最后进行仿真,同时与传统LSTM模型与EMD-BP模型进行对比,仿真结果表明基于EMD-LSTM模型的平台极短期预报方法精度较高,该方法是可行的,具有工程应用的实际意义。  相似文献   

10.
美国PME(Precision Measurement Engineering,Inc.)公司的MSCTI(Micro Scale Conductivity-Temperature Instrument)快速温度、电导率测量仪是测量微小尺度温度、电导率变化的仪器。目前国内外很多用户都是采用该仪器测量温盐跃层界面变化情况及湍流等现象。对于快速响应的温度传感器国内目前没有相应的测试检测装置。对PME公司的MSCTI温度传感器的时间常数测量及针对该测量仪的两种定标方法进行比较分析。实验结果表明经过四次拟合定标方法得出的温度测量值与温度标准值的测量误差较小,而采用PME公司推荐的两点拟合方法得出的电导率值测量误差较小。文章对该测量仪做了较为细致的分析,为科学使用该测量仪进行了探索,为今后使用该测量仪的海洋科学工作者提供一定的技术参考。  相似文献   

11.
Tsunami shelter has been designed and built as a refuges in case tsunami occurs. In recent year, different kinds of tsunami shelter have been proposed and developed, which is either a building type or a floating one. The main purpose of this research is to propose a new type of tsunami shelter with elastic mooring in comparison with a fixed type of shelter and to investigate tsunami force acting on the shelter and motions due to tsunami wave. Three different kinds of tsunami shelter were compared, rectangular, trapezoid and streamline type, with two conditions such as fixed on the ground and floating with elastic mooring. To compute interaction between run-up tsunami wave and the tsunami shelters with mooring, the numerical model has been developed by using particle based method, Smooth Particle Hydrodynamic (SPH) coupling with Extended Discrete Element Method (EDEM) for elastic mooring. Based on the validation of tsunami force and shelter motions with experimental results, the numerical results indicated that the model can simulate interactions between tsunami wave and shelter in fixed and mooring case. The result also shows that the tsunami force on the fixed tsunami shelter can be higher than that on the tsunami shelter with elastic mooring and then the mooring system can reduce tsunami force, 35% for averaged value and 50% for maximum one and the surge and pitch motions can be also reduced. The tsunami shelter with elastic mooring system could be a useful option for evacuating from tsunami attacking.  相似文献   

12.
A physics-based computational model has been developed that is capable of reliably predicting the motion of a 3-D mine-shaped object impacting the water surface from the air, and subsequently, dropping through the water toward the sea bottom. This deterministic model [mine's six-degree-of-freedom dynamics (MINE6D)] accounts for six-degree-of-freedom motions of the body including unsteady hydrodynamic interaction effects. MINE6D allows for physics-based modeling of other hydrodynamic effects due to water impact, viscous drag associated with flow separation and vortex shedding, air entrainment, and realistic flow environments. To demonstrate the efficacy of the model, we compare deterministic MINE6D predictions with tank drops tests and field measurements. MINE6D captures the myriad of complex 3-D motions of cylindrical mines observed in field and laboratory experiments. For relatively simple straight motions, it obtains quantitative comparisons with the field measurements for the kinematics of mines freely dropping in the water including water impact and air cavity effects. In practical applications, the environments are often quite irregular, and the releasing conditions are also with uncertainties. To provide some guidance in understanding and interpreting statistical characterizations of mine motions in practical environments, we perform Monte Carlo simulation using MINE6D. These statistical results are not only the essential input for stochastic bottom impact and burial predictions of mines but also useful for the design of mines.  相似文献   

13.
Three-dimensional liquid sloshing in a tank with baffles   总被引:1,自引:0,他引:1  
A numerical model has been developed to study three-dimensional (3D) liquid sloshing in a tank with baffles. The numerical model solves the spatially averaged Navier-Stokes equations, which are constructed on a non-inertial reference frame having six degree-of-freedom (DOF) of motions. The large-eddy-simulation (LES) approach is employed to model turbulence by using the Smagorinsky sub-grid scale (SGS) closure model. The two-step projection method is employed in the numerical solutions, aided by the Bi-CGSTAB technique to solve the pressure Poisson equation for the filtered pressure field. The second-order accurate volume-of-fluid (VOF) method is used to track the distorted and broken free surface. The baffles in the tank are modeled by the concept of virtual boundary force (VBF) method. The numerical model is first validated against the available analytical solution and experimental data for two-dimensional (2D) liquid sloshing in a tank without baffles. The 2D liquid sloshing in tanks with baffles is then investigated. The numerical results are compared with other results from available literatures. Good agreement is obtained. Finally, the model is used to study 3D liquid sloshing in a tank with vertical baffles. The effect of the baffle is investigated and discussed.  相似文献   

14.
海底管道中颗粒侵蚀是油气输送过程面临的一个重要问题,也是流动保障的一个重要分支。弯头和T型堵头管是油气生产中最易于发生颗粒侵蚀的管道组件。首先使用剪切压力传输模型(SST)计算管道内流场,使用拉格朗日方法跟踪颗粒运动轨迹,结合颗粒随机反弹模型,建立跟踪复杂流场中大规模颗粒运动轨迹的一般方法;之后引入四种颗粒侵蚀公式,预测弯头、T型堵头管的砂粒侵蚀结果,并结合实验数据,比较分析各侵蚀公式的精度与适用性。分析结果表明,对于弯头,四种侵蚀公式的数值结果与实验结果均吻合良好,其中Tabakoff的侵蚀公式具有较高的精度和较好的适用范围;对于T型堵头管,数值方法对颗粒运动机理的模拟尚存缺陷,需做进一步改进。  相似文献   

15.
A 2-D time-domain numerical coupled model is developed to obtain an efficient method for nonlinear wave forces on a fixed box-shaped ship in a harbor.The domain is divided into an inner domain and an outer domain.The inner domain is the area beneath the ship and the flow is described by the simplified Euler equations.The other area is the outer domain and the flow is defined by the higher-order Boussinesq equations in order to consider the nonlinearity of the wave motions.Along the interface boundaries between the inner domain and the outer domain,the volume flux is assumed to be continuous and the wave pressures are equal.Relevant physical experiment is conducted to validate the present model.It is shown that the numerical results agree with the experimental data.Compared with the coupled model with the flow in the inner domain governed by the Laplace equation,the present coupled model is more efficient and its solution procedure is more simple,which is particularly useful for the study on the effect of the nonlinear wave forces on a fixed box-shaped ship in a large harbor.  相似文献   

16.
The coupled system of two side-by-side fixed and/or floating bodies interacting with a large amplitude nonlinear wave is studied using a direct time domain solution method. The numerical model is based on a three-dimensional mixed Eulerian–Lagrangian (MEL) method under certain simplifying approximations permitting Rankine panel scheme to be implemented over a time-invariant boundary surface to solve the boundary value problem for the unknown velocity potentials. A 4th order Adams–Bashforth–Moulton scheme is used for time marching of rigid-body motion histories of the individual bodies and evolution of the free-surface including the gap region in which large resonant fluid motions occur. A systematic study has been carried out to evaluate the performance of the developed time domain method in simulating the forces and motions as well as the fluid motion in the gap region for the two body system under various arrangements and in different wave-headings. At first, the computed numerical results have been validated and verified with computational and experimental results available in literature for standard geometries such as vertical truncated cylinders and rectangular boxes. Secondly, effectiveness of the damping lid model which is introduced to suppress wave resonance in the gap region is investigated including its influence on maximum sway forces on fixed and floating rectangular barges in side-by-side configurations. Thirdly, comparative studies on absolute and relative motion response for two cases (two rectangular barges, and a FLNG-FPSO + shuttle tanker) in side-by-side arrangement are detailed to bring out the importance of nonlinearities arising due to steep nonlinear incident waves. Finally, coupled motions of the two-body system of an FPSO and a shuttle tanker floating in side-by-side configuration in a steep nonlinear wave field are studied in which the two bodies are connected through hawsers, and also the FPSO is moored to the ground. Additionally there is a fender between the two bodies.  相似文献   

17.
Time-domain computations of 3D ship motions with forward speed are presented in this paper. The method of computation is based upon transient Green function. Both linear and nonlinear (large-amplitude) computations are performed where the included nonlinearities are those arising from the incident wave, but the diffraction and radiation forces are otherwise retained as linear. The incident wave can be described by any explicit nonlinear model. Computations over a variety of wave and speed parameters establish the robustness of the algorithm, which include high speed and following waves. Comparison of linear and nonlinear computations show that nonlinearities have a considerable influence on the results, particularly in predicting the instantaneous location of the hull in relation to the wave, which is crucial in determining forefoot emergence and deck wetness.  相似文献   

18.
19.
On the parametric rolling of ships using a numerical simulation method   总被引:2,自引:0,他引:2  
B.C. Chang   《Ocean Engineering》2008,35(5-6):447-457
This paper has shown a numerical motion simulation method which can be employed to study on parametric rolling of ships in a seaway. The method takes account of the main nonlinear terms in the rolling equation which stabilize parametric rolling, including the nonlinear shape of the righting arm curve, nonlinear damping and cross coupling among all 6 degrees of freedom. For the heave, pitch, sway and yaw motions, the method uses response amplitude operators determined by means of the strip method, whereas the roll and surge motions of the ship are simulated, using nonlinear motion equations coupled with the other 4 degrees of freedom. For computing righting arms in seaways, Grim's effective wave concept is used. Using these transfer functions of effective wave together with the heave and pitch transfer functions, the mean ship immersion, its trim and the effective regular wave height are computed for every time step during the simulation. The righting arm is interpolated from tables, computed before starting the simulation, depending on these three quantities and the heel angle. The nonlinear damping moment and the effect of bilge keels are also taken into account. The numerical simulation tool has shown to be able to model the basic mechanism of parametric rolling motions. Some main characteristics of parametric rolling of ships in a seaway can be good reproduced by means of the method. Comprehensive parametric analyses on parametric rolling amplitude in regular waves have been carried out, with that the complicated parametric rolling phenomena can be understood better.  相似文献   

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