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1.
船舶碰撞过程中,被撞船的刚体运动较之碰撞区的局部损伤变形而言,存在一定程度的滞后效应。本文从理论分析和数值仿真两个方面对该滞后现象进行了研究。研究结果表明:被撞船的运动滞后与撞击速度有重要关系;在高速撞击时,船舶碰撞的内、外部机理计算可相对独立地进行,而不会引起明显的分析误差。  相似文献   

2.
基于全耦合技术的船体结构碰撞性能研究   总被引:1,自引:0,他引:1  
由于船舶碰撞问题的复杂性,通常是将船舶碰撞的外部机理与内部机理分开研究。作者基于“全耦合”分析技术,建立撞击船与被撞船整船模型,成功解决了船体与流场、撞击船与被撞船的耦合。此外,考虑撞击船与被撞船同步损伤,将内部机理同外部机理同步分析。通过数值仿真计算,分析了碰撞后撞击船与被撞船的运动、能量转化以及碰撞力、损伤变形及各构件的吸能情况。另外,开展多种碰撞工况计算研究,得出了便于工程应用的极限撞速曲线,为后续的船舶碰撞研究提供了技术支撑。  相似文献   

3.
船首形状对舷侧结构碰撞性能的影响研究   总被引:3,自引:1,他引:2  
刘昆  张延昌  王自力 《船舶工程》2010,32(2):13-16,31
船舶碰撞问题一直是船舶力学界研究的热点,但以往的研究并没有深入分析各类船舶的不同艏部形状对碰撞性能所产生的影响.为此利用数值仿真软件MSC/Dytran,对具有不同曲率的球鼻型船首和不同张角的常规船首撞击下舷侧结构的碰撞性能进行了定量的比较研究.结果表明,撞击船首部形状对被撞船舷侧结构的碰撞性能产生显著的影响,撞击船球鼻曲率形状参数越小或艏部张角越大,舷侧结构极限撞深提高,碰撞力增大,极限撞深时的吸能增多.  相似文献   

4.
为了研究撞击船艏形状及刚度对碰撞历程损伤变形产生的影响,利用数值仿真软件MSC/Dytran,对不同形式及刚度的球艏型船艏撞击下被撞船舷侧结构的碰撞性能进行了定量的分析研究.结果表明:船艏形式及刚度对船舶碰撞安全性会产生影响,撞击船艏部与被撞船舷侧的接触面积越大,舷侧结构吸能越多,其碰撞安全性也就越好.考虑实际船艏结构刚度的影响可以提高极限撞深,从而增加舷侧各构件的吸能效果,对舷侧结构的碰撞安全性有利.  相似文献   

5.
本文提出一种能够模拟船舶海上碰撞环境的模型试验方案,并结合船舶拖曳水池开展了系列模型碰撞试验,分析了不同撞击速度和撞击角度条件下的被撞船模型舷侧结构损伤特性,研究工作可为更好地理解船舶在实际场景下碰撞后的运动规律及仿真方法验证提供试验数据支撑。  相似文献   

6.
目前船舶碰撞研究普遍采用忽略水对船体影响的附连水质量法,本文将水介质对船舶的影响考虑进去,建立船—水—船相互作用的流固耦合算法。并以600吨级巡逻船为研究对象,建立撞击船与被撞船整船模型以及适当大小的水域,解决了撞击船—流场—被撞船之间的耦合问题。在数值仿真计算过程中,将内部动力学及外部动力学同步分析,获得了不同工况下被撞船的运动状态以及损伤变形、碰撞速度和碰撞力等动态结构响应。所获结果可为巡逻船在不可避免地发生碰撞时提供操船建议,对于提高巡逻船的战斗力具有重要的意义。  相似文献   

7.
目前船舶碰撞研究普遍采用忽略水对船体影响的附连水质量法,本文将水介质对船舶的影响考虑进去,建立船—水—船相互作用的流固耦合算法。并以600吨级巡逻船为研究对象,建立撞击船与被撞船整船模型以及适当大小的水域,解决了撞击船—流场—被撞船之间的耦合问题。在数值仿真计算过程中,将内部动力学及外部动力学同步分析,获得了不同工况下被撞船的运动状态以及损伤变形、碰撞速度和碰撞力等动态结构响应。所获结果可为巡逻船在不可避免地发生碰撞时提供操船建议,对于提高巡逻船的战斗力具有重要的意义。  相似文献   

8.
船舶碰撞事故往往会引起被撞船的船体结构严重损坏,并且威胁船上人员的生命安全.在船一船碰撞中被撞船的损伤程度取决于两个方面:一是舷侧结构的碰撞性能;二是撞击船艏结构的相对刚度.船舶的艏部结构刚度一般远远高于舷侧结构的刚度,在船舶碰撞研究时,通常将撞头理想化为刚体,不考虑其损伤变形和能量吸收,这样做实际上过于保守.本文针对舰船,主要研究舰艏结构的碰撞损伤特性,将撞击舰艏作为可变形结构进行数值仿真研究,得到了一些艏部变形的规律.  相似文献   

9.
采用集中参数模型和附加质量法分别考虑桩-土相互作用和动水压力作用,应用碰撞接触算法模拟船舶与码头碰撞效应,对全直桩码头进行了船舶撞击作用下的动力损伤分析。结果表明,考虑动水压力作用对船撞码头的碰撞力、码头位移和基桩损伤影响较小,基本可以忽略;考虑桩-土相互作用对船撞码头的位移和基桩损伤影响较大,不可忽略。同时分析了撞击位置、撞击角度和撞击速度对船撞码头结构损伤的影响。结果表明,撞击位置在码头边缘、撞击角度为90°(垂直于码头前沿)时对码头不利;撞击速度越大,码头破坏越严重。  相似文献   

10.
根据船舶碰撞的运动滞后和局部损伤特性,采用附连水质量处理流体-结构耦合作用,用详细的有限元模型表达撞击船首和被撞船侧的直接涉撞区结构,而将非碰撞区的船体结构以具有相应质量分布和弯曲刚度的惯性等效模型来代表,并将之与碰撞区的局部模型适当地联接起来,形成一个组合模型用于碰撞仿真计算。该组合模型不仅建模工作量小,而且CPU时间也大大减小。算例表明,组合模型与流固耦合模型的分析结果具有良好的一致性,可以满足一般的工程精度要求。  相似文献   

11.
船舶碰撞缓冲型球鼻艏概念探讨--球鼻曲率对碰撞的影响   总被引:1,自引:0,他引:1  
船舶碰撞事故中,被撞油船船侧的破裂会引起严重的海洋污染,故油船双层船壳设计成为防止被撞油船破损的有效措施。但随着海上运输船舶的数目及尺度的日益增大,双层船壳已不能满足防止船侧破损的要求。本文提出了缓冲型球算般的构思。在船舶相撞的过程中,球鼻艏曲率的尖锐程度影响被撞船船侧的损伤程度,故提出并讨论了表征球鼻艏碰撞特性的标志性参数。通过对不同曲率的球鼻艏一系列的碴撞数值仿真计算,详细描述了外形曲率对球鼻艏的变形形态、碰撞力、碰撞力密度及能量吸收的影响,指出船舶采用钝形的球鼻艏能有效减小碰撞时的穿透损伤。  相似文献   

12.
高强度钢缓冲型船艏研究   总被引:1,自引:0,他引:1  
在船舶碰撞事故中,一般船侧的破损程度比船艏大,从环境保护的全局意识及降低整体经济损失的角度出发,应该在保证船艏结构在能够承受常规载荷的前提下适当地减小其纵向刚度,使其在撞击船侧时导致船侧破损的可能性降低。笔者从损伤形态,碰撞力,碰撞力密度和能量吸收等方面对采用高强度钢的缓冲船艏进行研究,发现船艏结构采用高强度钢在等强度的条件下,可减少结构的板厚和船艏结构的临界压溃载荷,从而降低对被撞船舶侧结构的破坏。  相似文献   

13.
During ship collisions part of the kinetic energy of the involved vessels immediately prior to contact is absorbed as energy dissipated by crushing of the hull structures, by friction and by elastic energy. The purpose of this report is to present an estimate of the elastic energy that can be stored in elastic hull vibrations during a ship collision.When a ship side is strengthened in order to improve the crashworthiness it has been argued in the scientific literature that a non-trivial part of the energy released for structural deformation during the collision can be absorbed as elastic energy in global ship hull vibrations, such that with strong ship sides less energy has to be spent in crushing of the striking ship bow and/or the struck ship side.In normal ship–ship collision analyses both the striking and struck ship are usually considered as rigid bodies where structural crushing is confined to the impact location and where local and global bending vibration modes are neglected. That is, the structural deformation problem is considered quasi-static. In this paper a simple uniform free–free beam model is presented for estimating the energy transported into the global bending vibrations of the struck ship hull during ship–ship collisions. The striking ship is still considered as a rigid body. The local interaction between the two ships is modeled by a linear load–deflection relation.The analysis results for a simplified model of a struck coaster and of a large tanker show that the elastic energy absorbed by the struck ship normally is small and varies from 1 to 6% of the energy released for crushing. The energy stored as elastic global hull girder vibrations depends on the ship mass, the local stiffness of the side structure, and of the position of contact. The results also show that in case of highly strengthened ship sides the maximum global bending strains during collisions can lead to hull failure.  相似文献   

14.
A conceptual design framework for collision and grounding analysis is proposed to evaluate the crashworthiness of double-hull structures. This work attempts to simplify the input parameters needed for the analysis, which can be considered as a step towards a design-oriented procedure against collision and grounding. Four typical collision and grounding scenarios are considered: (1) side structure struck by a bulbous bow, (2) side structure struck by a straight bow, (3) bottom raking, (4) bottom stranding. The analyses of these scenarios are based on statistical data of striking ship dimensions, velocities, collision angles and locations, as well as seabed shapes and sizes, grounding depth and location. The evaluation of the damage extent considers the 50- and 90-percentile values from the statistics of collision and grounding accidents. The external dynamics and internal mechanics are combined to analyse systematically the ship structural damage and energy absorption under accidental loadings.  相似文献   

15.
Ship collision accidents are rare events but pose huge threat to human lives, assets, and the environment. Many researchers have sought for effective models that compute ship stochastic response during collisions by considering the variability of ship collision scenario parameters. However, the existing models were limited by the capability of the collision computational models and did not completely capture collision scenario, and material and geometric uncertainties. In this paper, a novel framework to performance characterisation of ships in collision involving a variety of striking ships is developed, by characterising the structural consequences with efficient response models. A double-hull oil carrier is chosen as the struck ship to demonstrate the applicability of the proposed framework. Response surface techniques are employed to generate the most probable input design sets which are used to sample an automated finite element tool to compute the chosen structural consequences. The resulting predictor-response relationships are fitted with suitable surrogate models to probabilistically characterise the struck ship damage under collisions. As demonstrated in this paper, such models are extremely useful to reduce the computational complexity in obtaining probabilistic design measures for ship structures. The proposed probabilistic approach is also combined with available collision frequency models from literature to demonstrate the risk tolerance computations.  相似文献   

16.
Ship collision accidents are rare events but pose huge threat to human lives, assets, and the environment. Many researchers have sought for effective models that compute ship stochastic response during collisions by considering the variability of ship collision scenario parameters. However, the existing models were limited by the capability of the collision computational models and did not completely capture collision scenario, and material and geometric uncertainties. In this paper, a novel framework to performance characterisation of ships in collision involving a variety of striking ships is developed, by characterising the structural consequences with efficient response models. A double-hull oil carrier is chosen as the struck ship to demonstrate the applicability of the proposed framework. Response surface techniques are employed to generate the most probable input design sets which are used to sample an automated finite element tool to compute the chosen structural consequences. The resulting predictor-response relationships are fitted with suitable surrogate models to probabilistically characterise the struck ship damage under collisions. As demonstrated in this paper, such models are extremely useful to reduce the computational complexity in obtaining probabilistic design measures for ship structures. The proposed probabilistic approach is also combined with available collision frequency models from literature to demonstrate the risk tolerance computations.  相似文献   

17.
《Marine Structures》2002,15(4-5):335-364
This paper examines the influence of collision scenario random variables on the extent of predicted damage in ship collisions. Struck and striking ship speed, collision angle, striking ship type and striking ship displacement are treated as independent random variables. Other striking ship characteristics are treated as dependent variables derived from the independent variables based on relationships developed from worldwide ship data. A Simplified Collision Model (SIMCOL) is used to assess the sensitivity of probabilistic damage extent to these variables. SIMCOL applies the scenario variables directly in a time-stepping simultaneous solution of internal (structural) and external (ship) problems. During the simultaneous solution SIMCOL also calculates struck ship absorbed energy in the longitudinal and transverse directions. These results are compared to absorbed energy estimates based on uncoupled external dynamics only. The necessity and effectiveness of this approach is examined.  相似文献   

18.
双层舷侧结构碰撞损伤过程研究   总被引:10,自引:3,他引:7  
采用非线性动态响应分析方法,对船舶双层舷侧结构的碰撞损客 研究。研究中,结构材料采用线性强化弹性模型并计入了应变速率引起的材料强化,考虑了碰撞面的接触 与摩擦。  相似文献   

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