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极地船舶与浮体结构物力学问题研究综述 被引量:29
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作者 薛彦卓 倪宝玉 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2016年第1期36-40,共5页
北极航道的开发和极地资源的勘采为船舶与海洋工程装备设计制造提供了良好的发展契机,但极地极端载荷环境所引起的复杂力学问题也相应地提出了巨大的挑战。为此,本文首先梳理极地航行船舶与浮体结构物涉及的基础力学问题,回顾并讨论国... 北极航道的开发和极地资源的勘采为船舶与海洋工程装备设计制造提供了良好的发展契机,但极地极端载荷环境所引起的复杂力学问题也相应地提出了巨大的挑战。为此,本文首先梳理极地航行船舶与浮体结构物涉及的基础力学问题,回顾并讨论国内外在相关力学问题方面的研究进展和技术难点,对于极区波浪传播的理论模型,分析了质量荷载模型,弹性薄板模型,粘性层模型和粘-弹性模型的优缺点和适用性;对于海冰力学行为的数值方法,阐述了有限元法(FEM)和离散元法(DEM)的数值模拟进展;对比了冰区船舶的自由航行和约束船模实验等。本文为航行船舶与浮体结构物的研发提供了一定的参考。 展开更多
关键词 北极 极地船舶 浮体结构物 力学问题 综述
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多浮体结构物极限强度的组合箱型梁计算方法 被引量:1
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作者 章文辉 冯峰 +2 位作者 周泽才 郝军凯 李鹏飞 《应用科技》 CAS 2018年第1期39-46,共8页
对于双体船、三体船以及半潜式海洋平台等多浮体海洋结构物,其极限强度的评估与传统单体船舶有着很大区别,除了总纵弯曲外,总横弯曲和扭转的作用也将变得显著。引用既有的经典箱型梁结构,在对非线性有限元计算结果的准确性进行验证后,... 对于双体船、三体船以及半潜式海洋平台等多浮体海洋结构物,其极限强度的评估与传统单体船舶有着很大区别,除了总纵弯曲外,总横弯曲和扭转的作用也将变得显著。引用既有的经典箱型梁结构,在对非线性有限元计算结果的准确性进行验证后,组合不同形状的箱型梁来模拟多浮体海洋结构物的基本构造,查找规范确定其危险工况,进行典型工况下的极限强度非线性有限元分析。就此提出一种通用的多浮体结构物极限强度的组合箱型梁计算方法,为多体船和半潜式海洋平台等极限强度的校核提供参考。 展开更多
关键词 浮体结构物 组合箱型梁 非线性有限元 极限强度 总纵弯曲 总横弯曲 扭转 结构强度
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Design of Ocean Floating Structures:Prediction of Hydrodynamic Coefficients
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作者 LI Wei FAN Shaotao +1 位作者 WANG Jinxi LIU Tianhui 《南方能源建设》 2024年第6期18-32,共15页
[Introduction] Accurate calculation of the hydrodynamic coefficients for floating structures and the investigation of the flow field distribution around floating bodies on the marine free surface are essential for imp... [Introduction] Accurate calculation of the hydrodynamic coefficients for floating structures and the investigation of the flow field distribution around floating bodies on the marine free surface are essential for improving the engineering design and application of marine structures.[Method] This study utilized the computational fluid dynamics(CFD) approach and the Reynolds Averaged NavierStokes(RANS) method and considered the effects of viscosity and free surface interactions on the hydrodynamic behavior of floating structures.By employing the dynamic mesh technique,this study simulated the periodic movements of simplified three-dimensional(3D)shapes:spheres,cylinders,and cubes,which were representative of complex marine structures.The volume of fluid(VOF) method was leveraged to accurately track the nonlinear behavior of the free surface.In this analysis,the added mass and damping coefficients for the fundamental modes of motion(surge,heave,and roll) were calculated across a spectrum of frequencies,facilitating the fast determination of hydrodynamic forces and moments exerted on floating structures.[Result] The results of this study are not only consistent with the results of the 3D potential flow theory but also further reflect the role of viscosity.This method can be used for precise calculation of the hydrodynamic coefficients of floating structures and for describing the flow field of such structures in motion on a free surface.[Conclusion] The methodology presented goes beyond the traditional potential flow approach. 展开更多
关键词 Computational fluid dynamics ocean floating structures hydrodynamic coefficients fluid-structure interaction
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Time Domain Calculation of Connector Loads of a Very Large Floating Structure 被引量:3
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作者 Jiayang Gu Jie Wu +2 位作者 Enrong Qi Yifeng Guan Yubo Yuan 《Journal of Marine Science and Application》 CSCD 2015年第2期183-188,共6页
Loads generated after an air crash, ship collision, and other accidents may destroy very large floating structures (VLFSs) and create additional connector loads. In this study, the combined effects of ship collision... Loads generated after an air crash, ship collision, and other accidents may destroy very large floating structures (VLFSs) and create additional connector loads. In this study, the combined effects of ship collision and wave loads are considered to establish motion differential equations for a multi-body VLFS. A time domain calculation method is proposed to calculate the connector load of the VLFS in waves. The Longuet-Higgins model is employed to simulate the stochastic wave load. Fluid force and hydrodynamic coefficient are obtained with DNV Sesam software. The motion differential equation is calculated by applying the time domain method when the frequency domain hydrodynamic coefficient is converted into the memory function of the motion differential equation of the time domain. As a result of the combined action of wave and impact loads, high-frequency oscillation is observed in the time history curve of the connector load. At wave directions of 0° and 75°, the regularities of the time history curves of the connector loads in different directions are similar and the connector loads of C1 and C2 in the X direction are the largest. The oscillation load is observed in the connector in the Y direction at a wave direction of 75° and not at 0° This paper presents a time domain calculation method of connector load to provide a certain reference function for the future development of Chinese VLFS 展开更多
关键词 very large floating structures (VLFSs) time domainmotion differential equation COLLISION CONNECTOR impact load hydrodynamic coefficient oscillation load impact load
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