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基于随机Melnikov方法的甲板上浪船舶混沌运动研究 总被引:2,自引:0,他引:2
应用随机Melnikov方法和庞加莱截面研究甲板上浪时船舶的混沌运动。考虑甲板上浪对船舶静稳性的影响,建立随机横浪中船舶横摇运动方程。由随机Melnikov过程结合均方准则确定船舶产生混沌运动的参数域,计算不同参数域中船舶横摇响应的庞加莱截面和时间历程。结果表明,增加船舶阻尼将抑制混沌运动的发生。甲板上浪时船舶横摇响应的庞加莱截面上有两个吸引域,船舶运动过程有两个横摇中心。在非混沌参数域中,船舶只围绕其中的一个横摇中心运动;在混沌参数域中,发生由一个横摇中心到另一个横摇中心的随机跳跃。 相似文献
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[目的]系统地研究初始横倾角对随机横浪下船舶横摇运动响应的影响。[方法]以路径积分法为基础,通过数值求解控制横摇运动微分方程概率属性的Fokker-Planck方程,得到横摇运动响应的概率分布。[结果]结果显示,初始横倾角对船舶横摇运动响应谱的影响有限,但对横摇角概率分布以及横摇运动响应极值分布的影响十分明显,且会造成船舶安全性的显著恶化。[结论]路径积分法可作为研究随机海浪下船舶横摇运动特性的有效数值方法。 相似文献
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This paper presents an application of shallow water theory to describe the motion of floodwater inside a rolling ship in damage
condition. The time domain theoretical approach to the coupled problems of ship and water inside compartment motions is briefly
described, including the method used to solve for the water motion characteristics and forces exerted on the ship. This approach
is applied to the study of the behaviour of a passenger Ro–Ro ship in regular beam seas and numerical results are given for
the intact and damaged conditions. Comparison is made with experimental results. For the damaged condition, the characteristics
of the floodwater motion are studied in the time domain for a number of different wave frequencies. The shape of the free-surface
and phase of water motion in relation to the ship roll motion are shown for several wave frequencies. The dynamic floodwater
roll moment is also shown and compared with the static roll moment (flat horizontal free surface), allowing the conclusion
that the dynamic roll moment is much larger than the static roll moment, for high wave frequencies, and is in phase opposition
in relation to the roll motion. 相似文献
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国际海事组织(IMO)正致力于第二代完整稳性规范的制定,而参数横摇一直是船舶动态完整稳性研究的热点。文章采用考虑船舶操纵性和耐波性运动耦合的统一模型对迎浪规则波下的船舶参数横摇运动进行了时域数值模拟。在时域模型中,六自由度耐波性运动辐射绕射力采用切片理论计算,并由脉冲响应函数法转化到时域。非线性回复力和入射波力采用瞬时湿表面压力积分方法计算。操纵性运动基于MMG模型,依据统一理论将操纵性与耐波性运动进行耦合计算。文中先应用简化三自由度模型对三艘集装箱船进行了参数横摇样船计算,并进行了初步的模型实验验证,依据结果对比分析了横摇惯性矩、初稳性高和方形系数对参数横摇的影响。基于统一模型分析了操纵性运动对参数横摇的影响,并进行了参数横摇舵减摇研究。 相似文献
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波浪中破损船舶的运动会同时受到波浪激励和进出水的影响,而船体运动也会影响进出水过程,二者的相互影响机理十分复杂.本文重点研究波浪中破舱进出水对船舶运动响应的影响,文中首先基于势流理论建立了考虑破舱进出水的4DOF(横荡-垂荡-横摇-纵摇)相互耦合时域预报方法,在计算中假设舱内的液面水平,利用修正的伯努利方程模拟破舱进/出水,利用Ikeda's经验公式修正阻尼系数.然后以一艘ITTC破损稳性标模为例,研究了波浪中考虑破舱进出水的数学模型以及破舱进出水对运动响应的影响,并研究了不同自由度、破舱口位置对运动响应的影响.研究表明,本文基于势流理论建立的时域预报方法可以定量的预报破损船舶的运动响应. 相似文献
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大型船舶综合减摇系统的研究 总被引:15,自引:0,他引:15
本文在分析船舶的综合减摇问题以及船舶主要减横摇装置的优缺点的基础上,针对船舶的减横摇问题,兼顾船舶的静倾问题,提出了可应用于全工况下的船舶综合减摇系统.综合减摇系统是由减摇鳍、减摇水舱和抗静倾平衡水舱组成的.这种综合减摇系统既综合了鳍与水舱的优点,又克服了减摇鳍和减摇水舱各自的缺陷.以高速滚装船为例,建立了"船舶-减摇鳍-被动式U型水舱"系统的运动方程并进行了计算机仿真.通过对仿真结果的讨论和分析得到如下结论:这种综合减摇系统具有良好的减摇能力;在各种航态下(包括零航速)都能达到减摇要求;综合减摇系统的减摇性能远远好于单独使用减摇鳍和减摇水舱的性能.船舶综合减摇系统的提出为大型船舶的综合平衡开辟了新途径,这种设计方法对大型水面舰船、尤其对有舰载机的船舶及两栖作战舰船的综合减摇具有重要意义. 相似文献
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Anil Kumar Dash Praveen Perumpulissery Chandran Mohammed Kareem Khan Vishwanath Nagarajan Om Prakash Sha 《Journal of Marine Science and Technology》2016,21(4):689-708
In this paper, a mathematical model is developed for the maneuvering motion of a naval ship and bifurcations of its equilibrium are identified in roll-coupled motion. The subject ship is a high-speed surface combatant with twin-propeller twin-rudder system. Captive model tests are conducted for the ship using planar motion mechanism. Maneuvering coefficients are calculated by polynomial curve fitting of the test data. Uncertainty distribution in the coefficients is assumed same as that of the curve fitting errors. Uncertainty in the model coefficients is propagated to full-scale simulation results by the stochastic response surface method (SRSM). This method is computationally efficient as compared to standard Monte Carlo simulation technique. The SRSM uses polynomial chaos expansion of orthogonal to fit any probability distribution. Bifurcation analysis of the mathematical model is performed by varying the vertical center of gravity as the bifurcation parameter. Hopf bifurcation is identified. It is found that the bifurcations occur due to the coupling of roll motion with sway, yaw motion and rudder angle. In the presence of wind, roll angle response in bifurcation diagram is discussed. 相似文献
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描述了在实验室条件下、自行研制的一种模拟波浪中船载光通信机运动的实验平台.该平台由水平移动台、垂直升降台、旋转台和摆动台组成;在计算机控制下,根据海浪运动谱,采用线性系统理论建立船舶摇荡运动模型,模拟波浪中船载光通信机的运动;并以横摇运动为例,给出了它的一个运动实现. 相似文献
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Appropriate modeling of roll damping is one of the key issues in accurately predicting ship roll motion. The difficulties
in modeling roll damping arise from the nonlinear nature of the phenomena. In this study, we report a new effort in modeling
the bilge keel roll damping effect based on the blocking mechanisms of an object in the potential flow. This effect can be
implemented as a component of appropriate ship motion models. We used our digital, self-consistent, ship experimental laboratory
(DiSSEL) ship motion model to test its effectiveness in predicting ship roll motion. Our numerical experiment demonstrated
clearly that the implementation of this roll damping component improves significantly the accuracy of numerical model results
(the results were compared with ship experiment data from the Naval Surface Warfare Center, Carderock Division, Maneuvering
and Seakeeping Facility). 相似文献
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考虑阻尼力矩和恢复力矩的非线性,运用能量法对正横规则波中船舶非线性横摇运动方程进行等效线性化,导出等效线性系数表达式,并验证其工程实用性,为船舶横摇预报提供理论分析计算模型。 相似文献
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浪向信息对船舶安全航行至关重要.然而实际海浪是复杂的三维不规则波,目前尚无简易的浪向预报装置,驾驶者只能靠目测初步判断浪向,同时根据船舶在波浪中的运动状态逐步调整航向.本文基于"二轴流速仪定向原理",将航行中的船舶纵摇、横摇运动信息转换为二轴流速仪的输出,实现了以最少的信息采集和数据处理方法以获得基本的浪向信息,为航行中的船舶提供了一较简易、可靠的浪向估计方法. 相似文献
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Naoya Umeda Satoshi Usada Kentaro Mizumoto Akihiko Matsuda 《Journal of Marine Science and Technology》2016,21(1):23-37
To avoid stability failure due to the broaching associated with surf riding, the International Maritime Organization (IMO) has begun to develop multilayered intact stability criteria. A theoretical model using deterministic ship dynamics and stochastic wave theory is a candidate for the highest layer of this scheme. To complete the project, experimental validation of the theoretical method for estimating broaching probability in irregular waves is indispensable. We therefore conducted free-running model experiments using a typical twin-propeller and twin-rudder ship in irregular waves. A simulation model of coupled surge–sway–yaw–roll motion was simultaneously refined. The broaching probability calculated by the theoretical method was within the 95 % confidence interval of that obtained from the experimental data. This could be an example of experimental validation of the theoretical method for estimating the broaching probability when a ship meets a wave. 相似文献
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为讨论船舶在波浪中的非线性横摇,应用非线性动力学的方法对现象进行理论分析,得到主共振情况下船舶运动稳态响应的解析解,并对实船进行稳定性分析。通过不同波浪条件下船舶非线性横摇运动的模拟计算,预报船舶在横浪中的横摇运动,预报结果与试验结果比较一致。 相似文献
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《船舶与海洋工程学报》2015,(2)
Energy optimization is one of the key problems for ship roll reduction systems in the last decade. According to the nonlinear characteristics of ship motion, the four degrees of freedom nonlinear model of Fin/Rudder roll stabilization can be established. This paper analyzes energy consumption caused by overcoming the resistance and the yaw, which is added to the fin/rudder roll stabilization system as new performance index. In order to achieve the purpose of the roll reduction, ship course keeping and energy optimization, the self-tuning PID controller based on the multi-objective genetic algorithm(MOGA) method is used to optimize performance index. In addition, random weight coefficient is adopted to build a multi-objective genetic algorithm optimization model. The objective function is improved so that the objective function can be normalized to a constant level. Simulation results showed that the control method based on MOGA, compared with the traditional control method, not only improves the efficiency of roll stabilization and yaw control precision, but also optimizes the energy of the system. The proposed methodology can get a better performance at different sea states. 相似文献
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具有波浪运动补偿功能的稳定平台可有效减少船舶在风浪中的摇摆和升沉运动对某些海上作业和设备的影响.为了有效地进行波浪运动补偿,需要对该平台的广义升沉位移(横摇、纵摇以及升沉的耦合作用结果)进行极短时预报.本文采用时间序列分析理论中的自回归(AR)模型作为预报模型,对波浪运动补偿平台的广义升沉位移进行极短时预报.在以往的研究中,通常采用递推最小二乘法AR模型进行在线参数估计.但是采用递推最小二乘法进行参数估计容易引起参数爆发,从而影响AR模型的稳定性.针对该问题,本文采用阻尼递推最小二乘法对AR模型进行在线参数估计,并结合实验获得的平台控制点的广义升沉位移数据进行实时建模预报.仿真结果表明,采用阻尼递推最小二乘法进行参数估计能抑制参数爆发,并能提高AR模型实时预报精度. 相似文献
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基于RANS和非线性动力学方法的海洋平台供应船水舱减摇预报 总被引:1,自引:0,他引:1
在探讨带平面被动式减摇水舱的海洋平台工作船在横浪中的减摇问题上,采用RANS方法进行船舶和水舱的强迫运动模拟,通过数值处理得到船舶和水舱的水动力系数。假设在共振频率下船舶和水舱的横摇运动在达到稳态后可以解耦,由非线性动力学的方法求解船舶横摇运动,并在波浪中进行系列模型试验以研究减摇特性。海洋平台工作船具有多工况的特点,不同载况对应不同船舶固有周期,实际航行中对减摇水舱的使用就是通过改变水舱水深使水舱的周期等于船舶固有周期,而通过上述方法的快速计算,选择合适的水深和阻尼隔板可以达到理想的减摇效果。结论表明该方法可以预报不同方案下的船舶横摇运动,该思路在船舶的减摇水舱设计阶段可以提供参考价值,并且在实船航行中可以提供水深加载指导以适应复杂的多工况航行。文中研究结果被运用于一艘实船航行时水舱加水策略中。 相似文献