共查询到19条相似文献,搜索用时 156 毫秒
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船体主尺度增大会导致严重的鞭振和弹振现象,这会增大船体结构的极限载荷和疲劳损伤.为了深入探究船体的振动响应,文中在拖曳水池对某万箱集装箱船分别进行了分段模型的自航和拖航试验.分析了不同海况下自航和拖航这两种试验方式对鞭振和弹振响应的影响.为计及不同振动频率成分对载荷响应的影响,提出一种考虑波浪记忆效应的非线性水弹性方法.文中提出了一种求解延时函数的方法,能够解决高频区域的阻尼系数的计算限制.最后,船舯弯矩试验结果分别和线性与非线性理论结果进行了比较,发现文中提出的非线性方法能够更好地预报弹性船体的振动响应. 相似文献
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提出一种实用的计算和分析方法来考虑砰击载荷对双体船湿甲板处结构疲劳强度的影响,保证疲劳寿命预报的精度。首先,根据线性理论计算船体与波浪之间的相对运动和相对速度,并计算船体结构在波浪载荷作用下的应力响应;然后,计算湿甲板在砰击载荷作用下的非线性响应,再将线性响应与非线性响应通过方向性进行叠加,得到波浪载荷与砰击载荷联合作用的应力响应时历;最后,通过雨流计数法计算双体船在危险工况下的湿甲板疲劳损伤。研究结果可为考虑砰击载荷的双体船湿甲板疲劳强度评估提供一些参考。 相似文献
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超大型集装箱船载荷响应特性的数值研究 总被引:1,自引:1,他引:0
相比于散货船、油船等,超大型集装箱船的船体弹性效应,特别是弯扭耦合效应十分明显,本文主要研究弹性效应对目标船所受波浪载荷数值计算结果的影响。本文分别采用了有限元法计算船体弯扭耦合模态和迁移矩阵法计算弯扭不耦合模态。本文基于三维水弹性理论在考虑弯扭耦合效应的条件下,计算分析1艘2万箱级超大型集装箱船的载荷响应特性,并把计算结果和基于刚体假设的载荷计算结果进行对比。本文在不考虑船体弯扭耦合模态下,计算目标船的波浪载荷,并把其与考虑弯扭耦合效应下的结果进行对比。最终得出在计算超大型集装箱船波浪载荷时,弹性效应和弯扭耦合现象不可忽略的结论。 相似文献
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水下爆炸冲击波作用下船体舱段变形试验研究 总被引:1,自引:0,他引:1
对舰船实尺度舱段在水下爆炸载荷作用下的船底板架变形进行了试验研究及理论分析。以舱段在水下爆炸的试验现象及结果为基础,通过平板模型求解药包在水下任意位置爆炸时舱段的刚体运动特性,以冲击波的入射能减去舱段刚体运动动能作为船底板架的弹塑性变形能,利用能量法,对船底板架应用薄板的大挠度弯曲理论进行局部变形求解。试验结果及理论分析表明:舱段模型在水下爆炸过程中会产生较大的刚体运动,船底外板变形区域主要集中在纵桁和实肋板交叉的板格内,理论求解的板格最大变形与试验结果较为一致。该文结果可对船体外板变形计算及局部强度考核提供数据及理论的参考。 相似文献
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某深拖母船为实现作业功能,在船舯位置设有上下贯通的大开口结构,该结构特性会严重削弱目标船的总纵强度和弯扭强度,因此在针对该开口区域进行详细设计后,还有必要采用全船结构有限元分析方法来评估结构强度和变形水平。通过设计波法得到波浪载荷,计算全船在各种工况下结构的应力、变形结果,总结出该船型的受力特点,并结合全船结构强度直接计算结果,选取的典型节点进行疲劳强度评估,得到各个典型节点的疲劳寿命。计算结果对目标船的结构优化具有参考意义。 相似文献
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Chang Doo Jang Jong Jin Jung Alexander A. Korobkin 《Journal of Marine Science and Technology》2007,12(2):95-101
This article describes an estimation method for the hull girder response of a ship due to springing. The linear and nonlinear
springing effects on the hull girder are evaluated. Previous studies on the springing response focused mainly on the symmetric
response, or vertical response. In this article, however, the springing analysis is extended to asymmetric responses, or horizontal
and torsional responses. The Timoshenko beam model was used to calculate the hull girder response and the quadratic strip
method was employed to calculate hydrodynamic forces and moments on the hull. To remove irregular frequencies, a rigid lid
was adopted on the hull free surface level and hydrodynamic coefficients were interpolated for asymptotic values. Applications
to two ships for the symmetric and asymmetric responses were carried out and the effect of springing responses is also discussed. 相似文献
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基于模型试验与三维水弹性理论的船舶波激振动响应研究 总被引:1,自引:0,他引:1
船体波激振动使得船体结构中产生高频、持续和具有一定幅值的振动应力,可能引起结构发生严重的疲劳损伤,因而对船舶结构的安全性带来严峻的挑战。文章以一艘大型LNG船为研究对象,采用三维线性水弹性理论与水池模型试验方法对船舶波激振动响应进行了比较分析,研究了规则波与不规则波中的波激振动特性。改变该LNG船的刚度,并保持船型、重量分布等其它主船体特征不变,在模型试验和理论计算中探讨了刚度对波激振动的影响。通过两种刚度船体梁的模型试验与理论计算结果的比较分析,给出了波浪周期和船体刚度的变化对波激振动影响的几点结论。 相似文献
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《船舶与海洋工程学报》2016,(3)
The desire to benefit from economy of scale is one of the major driving forces behind the continuous growth in ship sizes. However, models of new large ships need to be thoroughly investigated to determine the carrier's response in waves. In this work, experimental and numerical assessments of the motion and load response of a 550,000 DWT ore carrier are performed using prototype ships with softer stiffness, and towing tank tests are conducted using a segmented model with two schemes of softer stiffness. Numerical analyses are performed employing both rigid body and linear hydroelasticity theories using an in-house program and a comparison is then made between experimental and numerical results to establish the influence of stiffness on the ore carrier's springing response. Results show that softer stiffness models can be used when studying the springing response of ships in waves. 相似文献
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The desire to benefit from economy of scale is one of the major driving forces behind the continuous growth in ship sizes. However, models of new large ships need to be thoroughly investigated to determine the carrier’s response in waves. In this work, experimental and numerical assessments of the motion and load response of a 550,000 DWT ore carrier are performed using prototype ships with softer stiffness, and towing tank tests are conducted using a segmented model with two schemes of softer stiffness. Numerical analyses are performed employing both rigid body and linear hydroelasticity theories using an in-house program and a comparison is then made between experimental and numerical results to establish the influence of stiffness on the ore carrier’s springing response. Results show that softer stiffness models can be used when studying the springing response of ships in waves. 相似文献
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疲劳评估的关键问题是S-N曲线的选取,对于某些结构复杂的大型船舶特有的结构形式,现有规范没有合适的S-N曲线.为了更合理准确地进行结构疲劳强度研究,本文选取某型具有复杂结构的船舶,用实尺度模型试验的方法研究几种典型节点的S-N曲线特性.通过全船有限元谱分析疲劳强度计算,筛选出疲劳问题重点关注区域,确定模型试验部位;根据疲劳问题严重区域的实船结构,设计加工典型节点实尺度疲劳试验模型;确定多个加载工况,进行典型节点疲劳强度试验,获取典型节点多种载荷工况下的疲劳寿命值,在此基础上,研究得到各节点S-N曲线及P-S-N曲线;应用试验所得P-S-N曲线,对船体典型节点部位进行疲劳强度评估,并与规范S-N曲线结果进行了对比,指出了它们的差异. 相似文献