共查询到18条相似文献,搜索用时 125 毫秒
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单舱大开口重吊船弯扭强度有限元分析 总被引:2,自引:0,他引:2
针对10000t级单舱大开口重吊船的弯扭强度问题,运用水动力分析和全船有限元分析方法,通过挪威船级社的SESAM软件系统对波浪诱导载荷进行长期预报,推导出设计波参数组,在全船结构有限元模型上计算船体结构在各等效波上的变形和应力分布,从而获得全船结构强度的详细信息。对重吊船类大开口型船舶的结构设计和强度分析有一定的参考价值。 相似文献
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大型滚装船弯扭强度整船有限元分析 总被引:3,自引:0,他引:3
以大型滚装船为研究对象,采用现代的三维全船有限元分析技术及DNV船级社的SESAM软件系统,为全面研究整船弯扭强度,建立了全船有限元结构模型、质量模型、水动力计算模型;应用三维辐射—绕射理论和有限元程序进行波浪载荷的长期预报,在此基础上确定设计波参数;对全船结构有限元模型在设计波载荷作用下分析计算得到各种工况下船体结构的应力、变形响应,获得船体结构强度特点,对该类船舶的结构设计优化和强度分析有一定的参考价值,同时对其他类型船舶弯扭强度全船有限元分析有借鉴意义。 相似文献
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基于设计波法的舰船整船有限元强度分析 总被引:1,自引:1,他引:0
基于谱分析法对舰船剖面波浪载荷进行长期预报并确定设计波参数.利用有限元软件MSC.Patran 建立了全船有限元模型,通过PCL语言实现设计波波浪压力对船体湿表面有限元网格的自动加载.对2个设计波下的整船有限元进行分析,结果表明:整船分析不仅能真实表现舰船整体总纵变形和应力水平,还能充分考虑局部载荷对结构响应的影响.另外,基于三维水动力理论分析船体运动和剖面载荷进而确定设计波参数的过程,克服了传统经验公式估算载荷所导致的结果的不确定性和强度校核的不合理性. 相似文献
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《舰船科学技术》2017,(9)
本文采用基于设计波法的直接计算法对270 000 m3的浮式液化天然气船FLNG进行整船结构强度评估。根据FLNG具体的结构形式和数值分析的最终目的将该装置的实际结构简化,选用适当类型的单元对该装置的结构进行离散而得到FLNG的整船有限元模型。基于三维势流理论并利用中国南海波浪散布图对FLNG进行水动力分析,得到了FLNG在典型装载工况下的波浪压力分布及设计波参数。通过把FLNG承受的波浪压力、惯性力、静水压力与重力等载荷分布到有限元模型上,得到FLNG在典型装载工况下全船的应力水平、应力分布和变形情况。该数值分析结果可在FLNG的初级设计阶段为船体结构强度分析提供有效分析依据,并为FLNG上部模块的设计开发提供船体变形参考。 相似文献
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本文采用基于设计波法的直接计算法对270 000m3的浮式液化天然气船FLNG进行整船结构强度评估.根据FLNG具体的结构形式和数值分析的最终目的将该装置的实际结构简化,选用适当类型的单元对该装置的结构进行离散而得到FLNG的整船有限元模型.基于三维势流理论并利用中国南海波浪散布图对FLNG进行水动力分析,得到了FLNG在典型装载工况下的波浪压力分布及设计波参数.通过把FLNG承受的波浪压力、惯性力、静水压力与重力等载荷分布到有限元模型上,得到FLNG在典型装载工况下全船的应力水平、应力分布和变形情况.该数值分析结果可在FLNG的初级设计阶段为船体结构强度分析提供有效分析依据,并为FLNG上部模块的设计开发提供船体变形参考. 相似文献
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以内河集装箱船为研究对象,运用Patran/Nastran对整船建模、施加边界约束载荷及求解。对全船结构有限元模型在设计波载荷作用下分析计算得到各种工况下船体结构的应力、变形响应,获得船体结构强度特点,对该类船舶的结构进行优选设计。 相似文献
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为准确评估超规范的载重3600t大通舱干货船的弯扭强度及变形水平,采取全船水动力分析及全船有限元直接计算的方法,对各工况下的主要载荷参数进行长期预报,推导出对应等效设计波各参数。根据等效设计波求出各工况全船所受的波浪诱导动载荷,施加到全船有限元模型上,进而对船体弯扭强度及变形水平进行评估。比较了单舱船及货舱中部设一道横舱壁的两舱船,得出单舱船屈曲强度不足的结论,并提出改善屈曲强度的方案。 相似文献
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《Marine Structures》2004,17(5):355-384
Container ship structures are characterized by large hatch openings. Due to this structural property, they are subject to large diagonal deformations of hatch openings and warping stresses under complex torsional moments in waves. This necessitates torsional strength assessment of hull girder of container ships in their structural design stage. In this paper, a practical method for torsional strength assessment of container ship structures with transparent and consistent background is discussed based on the results from up-to-date analyses. In order to estimate the torsional response characteristics as accurately as possible, three-dimensional Rankine source method, after being validated by tank tests, is employed for estimation of wave loads on a container ship, and FE analyses are conducted on the entire-ship model under the estimated loads. Then, a dominant regular wave condition under which the torsional response of the container ship becomes maximum is specified. Design loads for torsional strength assessment that give torsional response equivalent to the long-term predicted values of torsional response are investigated based on the torsional moments on several container ships under the specified dominant wave condition. An appropriate combination of stress components to estimate the total hull girder stress is also discussed. 相似文献
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Beom-Seon Jang Jae-Hoon Jung Yong-Suk Suh 《Journal of Marine Science and Technology》2008,13(4):408-415
This is Part II in a series of papers. Part I (J Mar Sci Technol 13:154–163) deals with an approach employed to construct
a simplified FE model using a 3D compartment model available from the beginning of the ship design process. This paper begins
by describing the limitations of an analytical approach based on shear warping beam theory for assessing torsional strength.
Next, the structural parts of a container ship that have a negligible effect on hull girder bending strength and torsional
strength are determined. This is verified by removing these parts from a conventional FE model and comparing the results obtained
using this modified model with those yielded by the original model. The fore end part, the aft end part and the deck house
are examined. Since these parts have complicated structures and relevant drawings for them are issued later than cargo structure
drawings, modeling them exactly can result in a delay in the completion of the full ship FE model. This paper also verifies
the validity of the simplified FE model built by applying the method proposed in Part I and comparing the results obtained
with it with those given by a conventional full ship FE model. The stresses on hatch coaming top, the maximum diagonal elongations
of the hatch coaming, and the maximum hatch corner movements are evaluated to check the validity of the simplified model. 相似文献
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迁移矩阵法在船体弯扭耦合振动分析中的应用 总被引:3,自引:0,他引:3
本文讨论了迁移矩阵法计算大开口船舶弯扭耦合振动问题,导出了多种点迁移和场迁移矩阵,并作了集装箱船的弯扭耦合振动分析。计算表明:用迁移矩阵法分析大开口船舶的弯扭耦合振动具有占用内存少、数据准备简单等优点。 相似文献
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不对称船体结构动态特性研究 总被引:2,自引:0,他引:2
针对计算常规船舶结构动态特性的方法不适用于计算左右不对称横剖面船体梁动态特性的问题,本文将船体视为薄壁梁并离散成梁段,推导出迁移矩阵法迭代求解不对称船体结构固有及固有振型的公式系统,计算了左右不对称程度不同的梁结构及不对称船 梁的固有频率及振型。指出不对称梁 有振动为弯扭耦合振动,其固有频率与振动型的对应关系与对称梁不同。 相似文献