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1.
伏耀华 《船舶工程》2014,36(S1):158-161
运用非线性有限元基本理论,采用大型动态计算软件MSC.Dytran,建立了基于钢-泡沫夹层结构的船舶首部以及冰体的三维有限元计算模型,分析了碰撞力的大小、船首及内部结构的损伤变形和能量吸收等特性。为研究大型运输船舶船首结构与冰之间碰撞性能奠定基础。通过使用钢-泡沫夹层结构替换舷侧外板,在有效行程内降低了碰撞力和增加总体的能量吸收,提高了整体的碰撞性能。  相似文献   

2.
航行于北冰洋海域的LNG船必须具备抵抗冰山撞击的能力。针对LNG船纵骨架式和横骨架式冰区结构加强方案,开展比较分析,评价LNG船舷侧抵抗冰山撞击的能力。根据CCS规范对LNG船舷侧分别进行纵骨架式与横骨架式冰区加强设计。利用有限元数值仿真技术和LS_DYNA软件,模拟冰山撞击LNG船舷侧场景,得到船体结构变形、碰撞力和能量吸收等结果。研究发现:横骨架式在相邻强横肋位之间结构较弱,纵骨架式表现出更好的抗冰撞击性能;冰带加强骨材在抵抗冰载荷过程中发挥重要作用;在提高抗冰撞击性能的前提下,纵骨架式加强方案拥有更佳的经济效益。  相似文献   

3.
The paper presents a simplified analytical method to examine the crushing resistance of web girders subjected to local static or dynamic in-plane loads. A new theoretical model, inspired by existing simplified approaches, is developed to describe the progressive plastic deformation behaviour of web girders. It is of considerable practical importance to estimate the extent of structural deformation within ship web girders during collision and grounding accidents. In this paper, new formulae to evaluate this crushing force are proposed on the basis of a new folding deformation mode. The folding deformation of web girders is divided into two parts, plastic deformation and elastic buckling zones, which are not taken into account for in the existing models. Thus, the proposed formulae can well express the crushing deformation behaviour of the first and subsequent folds. They are validated with experimental results of web girder found in literature and actual numerical simulations performed by the explicit LS-DYNA finite element solver. The elastic buckling zone, which absorbs almost zero energy, is captured and confirmed by the numerical results. In addition, the analytical method derives expressions to estimate the average strain rate of the web girders during the impact process and evaluates the material strain rate sensitivity with the Cowper-Symonds constitutive model. These adopted formulae, validated with an existing drop weight impact test, can well capture the dynamic effect of web girders.  相似文献   

4.
To simulate the FPSO-iceberg collision process more accurately, an elastic-plastic iceberg material model considering temperature gradient effects is proposed and applied. The model behaves linearly elastic until it reaches the ‘Tsai-Wu’ yield surfaces, which are a series of concentric elliptical curves of different sizes. Decreasing temperature results in a large yield surface. Failure criteria, based on the influence of accumulated plastic strain and hydrostatic pressure, are built into the model. Based on published experimental data on the relationship between depth and temperature in icebergs, three typical iceberg temperature profiles are proposed. According to these, ice elements located at different depths have different temperatures. The model is incorporated into LS-DYNA using a user-defined subroutine and applied to a simulation of FPSO collisions with different types of iceberg. Simulated area-pressure curves are compared with design codes to validate the iceberg model. The influence of iceberg shape and temperature on the collision process is analyzed. It is indicated that FPSO structural damage not only depends on the relative strength between the iceberg and the structure, but also depends on the local shape of the iceberg.  相似文献   

5.
文章以自升式海洋平台桩腿直管结构为研究对象,采用简化解析法和有限元数值仿真法对其在侧向冲击载荷作用下的变形机理进行了研究。文中首先基于前期试验,对管结构的变形模式进行了简化,并利用塑性力学理论求解出管结构的碰撞力与撞深解析表达式。然后利用有限元软件ABAQUS,对管结构的动态响应进行了数值模拟,将得到的碰撞力与撞深曲线与解析结果对比,以此验证文中解析方法的准确性。该文的研究成果可以为大型平台结构碰撞性能研究提供技术支撑。  相似文献   

6.
Steel fenders have been widely used to protect bridges from vessel collisions because of their relatively large plastic deformability and energy dissipation capacity. In the design of a steel fender, detailed finite element (FE) models are usually employed. However, detailed FE analysis involves complicated modeling and substantial computation time. This method is often not applicable, particularly during preliminary design iterations. For this reason, a simplified analytical method was developed in this paper with the aim to efficiently design steel fenders under vessel collisions. For primary individual members of steel fenders, the deformation mechanisms and models as well as participations during various collision scenarios were discussed in detail. By combining the contributions of primary members, a general analytical procedure was presented to rapidly estimate the force-deformation relationship of steel fenders under various bow impacts. For the fixed and floating steel fenders, several collision scenarios were simulated by FE models to verify the accuracy of the developed analytical method. The crushing resistances and energy dissipation capacities estimated by the developed analytical method were in good agreement with those obtained from the FE simulations. Based on the analytical method, an energy-based design approach was proposed for the efficient design of steel fenders. The developed design approach was demonstrated to be capable of predicting the crush depth and peak impact force of a steel fender with good accuracy.  相似文献   

7.
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   

8.
随着航运业的快速发展,海上航行的船舶越来越多.尽管人们做了许多努力避免海上意外事故的发生,但海难事故依然不可避免.为了降低上述事故造成的损失,需要在设计阶段快速并准确地预报船舶的结构耐撞性.本文以强桁材结构为研究对象,通过开展准静态冲压试验及相应的数值仿真,分析强桁材结构在面内冲压载荷作用下的变形机理,并基于试验与仿真所得到的结构变形特点,提出强桁材面内受压时的变形模式.以此为基础,运用塑性力学理论,推导出结构变形能、瞬时结构变形抗力及平均结构变形抗力的解析预报公式,并将计算结果与试验结果进行比较验证.研究得到的结构面内受压变形能和抗力解析计算公式,可以快速评估事故载荷下结构的响应情况,包括结构变形阻力及能量耗散,具有使用方便,计算速度快,计算结果相对可靠的优点,对船体耐撞结构设计及抗撞性能评估具有一定的指导意义.  相似文献   

9.
A new formulation is proposed for the analysis of the impact mechanics of ship collisions that can be applied to both 2D and 3D cases. It is assumed that the impact force is large, and all other forces except the impact forces are neglected. The equations of motion are solved in a local coordinate system, and a transformation matrix between the global and the local coordinate system is proposed. The mass and inertia properties are formulated in the local coordinate system. The orientation of the local coordinate system is determined by the hull shape of the struck ship at the contact point. A closed form solution of the external mechanics of ship collisions is derived. Excellent agreement with an alternative 2D formulation for ship–ship collisions is achieved. The features of the proposed 3D method are demonstrated by numerical examples. An application of the method to estimate the required energy dissipation in ship–iceberg collisions is included. Results and discussions are presented and finally, conclusions are made.  相似文献   

10.
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   

11.
碰撞事故是基于事故极限状态设计重点考虑的对象,在设计中越来越受到重视。文章以某大型浮式结构物为研究对象,总结分析ISO、API、HSE、DNV、ABS、BV、LR等标准及规范对碰撞场景的相关规定,提出碰撞分析场景及设计衡准;基于简化分析技术建立碰撞力学模型,利用动态非线性结构分析软件ABAQUS进行仿真分析,通过分析塑性应变、塑性变形、吸能、碰撞力及运动等,校核评估舷侧结构的耐撞性能;分析不同碰撞位置、撞击船型式等对碰撞性能的影响。研究表明:目标大型浮式结构物舷侧结构碰撞事故极限强度满足规范要求,首柱撞击相对比较危险,可作为计算分析控制工况。  相似文献   

12.
单壳船舷侧结构的碰撞分析   总被引:1,自引:1,他引:0  
给出一种计算船体结构基本构件——梁、板耐撞性的简化分析方法,并将该方法应用于单壳船舷侧结构的碰撞分析。讨论了球鼻首撞击作用下单壳船舷侧结构的总体破坏模式及其渐进破坏过程,提出了计及渐进破坏过程的碰撞损伤简化计算方法。实例计算结果表明:该简化分析方法能对单壳船舷侧结构的耐撞性作出合理的预报,可应用于船舶设计阶段船体结构耐撞性能的评估。  相似文献   

13.
Ship collisions with offshore structures may be characterized by large amounts of kinetic energy that can be dissipated as strain energy in either the ship, or the installation, or shared by both. In this paper a series of FE numerical simulations are performed with the aim of providing a clearer understanding on the strain energy dissipation phenomenon, particularly upon the ship-structure interaction. Ships of different dimensions and layouts are modelled for impact simulations. Likewise, three platform jacket models of different sizes and configurations are considered. The collision cases involve joints, legs, and braces and are simulated for several kinetic energy amounts of the vessels and different impact orientations. An overview of the plastic deformation mechanisms that can occur in both ship and jacket structure is also given. The results from the various models with different collision scenarios are compared in terms of the strain energy dissipation with respect to the different ship/installation strength ratios. From the FEA simplified approaches are also derived in terms of the relative stiffness of the two structures for assessing the responses and energy absorptions of the two structures. The conclusions drawn from this study can be applied to a broader range of collision assessment of offshore steel jacket platforms subjected to high-energy ship impacts.  相似文献   

14.
结构冲击试验的校准计算   总被引:1,自引:1,他引:0  
非线性有限元方法日益广泛地应用于结构冲击损伤的数值模拟计算,其可靠性和精度是值得关注的问题.本文为国际船舶结构大会(ISSC)对于本专题合作研究的部分结果.本文用超大型油船船侧结构碰撞大尺度模型试验的测量结果,验证非线性有限元方法及其代表性程序MSC.Dytran的计算效果.通过准静态和动态试验资料与计算结果的比较,指出非线性有限元方法在钢结构冲击(碰撞)计算中的有效性,同时指出正确实施计算过程,特别是有限元网格密度对于计算结果精度的重要性.对于结构在同一位置经受多次冲击的累积损伤计算,本文提出了一种非常简单但准确有效的模拟计算方法.  相似文献   

15.
采用电子显微镜(SEM)、力学性能测试等手段,分析了10CrNi3MoV船用钢热冲压成形前后微观结构变化,及热冲压成形后材料表层渐变微观结构和里层马氏体结构产生原因与变化规律。研究表明,在热冲压成形过程中,10CrNi3MoV船用钢受急剧的冷热交互作用及高温氧化脱碳等的影响,其表层由里到表依次形成以完全马氏体、马氏体与铁素体的混合组织、铁素体组成的渐变微观结构,里层则形成以均匀的板条状的马氏体组织为主的微观结构。10CrNi3MoV船用钢热冲压成形后其表层渐变微观结构,能有效的降低结构的峰值冲击力,保证了内层强度大的马氏体材料不至于过早失效,而材料较平缓的结构峰值力及逐层失效的特点性,使热冲压成形后的成形件保持较高的吸能能力和抗冲击性能。  相似文献   

16.
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   

17.
曲线梁桥是弯扭耦合作用下的空间受力结构,现行桥梁规范所包括的内容滞后于桥梁的发展,平面分析的方法已不适用。文中对曲线梁桥的弯扭耦合效应、内外梁体受力不均以及恒载作用下结构产生较大的转矩等受力特点进行了分析。分析结果表明:曲线梁桥中间支承方式的设定不能改变支座的反力,外侧腹板弯矩内力均大于内侧腹板的弯矩内力,曲线半径越小,变化幅度越大。  相似文献   

18.
深水海洋立管具有柔性,特别是极端海况条件下,相邻立管之间可能发生互相干涉而增大立管的应力,从而影响其疲劳寿命.钢悬链线立管相比顶张力立管,有效张力较小,对环境载荷作用更加敏感,更容易发生碰撞.基于动力学分析软件OrcaFlex建立有限元模型,从允许碰撞的角度出发,对串列布置于张力腿平台上的两根钢悬链线立管进行整体碰撞分析,研究立管间距、尾流模型、拖曳力系数、海流流速和柔性接头刚度对立管碰撞的影响,阐述对碰撞范围、上下游立管相对运动速度、最大碰撞速度和最大碰撞能量的影响规律,为实际工程中立管的空间布置和结构优化设计提供参考.  相似文献   

19.
Experimental drop weight impact tests are performed to examine the dynamic response of web girders in a one-tenth scaled tanker double hull structure struck laterally by a knife edge indenter. The small stiffeners of the full-scale prototype are smeared in the small-scale specimen by increasing the thicknesses of the corresponding plates. The plastic response is evaluated at two impact velocities and the impact location is chosen between two web frames to assure damage to the outer shell plating and the stringers. The laboratory results are compared with numerical simulations performed by the LS-DYNA finite element solver. In the simulations, the strain hardening of the material is defined using experimental data of quasi-static tension tests and the strain rate sensitivity is evaluated using standard coefficients of the Cowper–Symonds constitutive model. The experimental permanent deflection and shape of the deformation show a good agreement with the collision simulations. It is found that the crushing resistance of the specimens is determined by the deformation mechanism of the stringers. Thus, the deformation process is described and compared with theoretical deformation modes for web girders subjected to large in-plane quasi-static loads. Additionally, the influence of the stiffeners on the shape of the deformation of the stringers is illustrated through simulations of stiffened structural elements.  相似文献   

20.
针对目前桥梁箱梁腹板弧形段施工中常见的几种施工工艺,进行了综合分析比较,得出采用10 mm竹胶板作为腹板弧形段面板,采用单根钢管制作成钢托横格栅支撑结构的箱梁腹板弧形段竹胶板模板施工工艺作为箱梁弧形段施工的最佳工艺,并期望在桥梁施工中能够普及推广.  相似文献   

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