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1.
本文采用光弹性试验方法,对不同管径比的T型管节点,沿相贯线不同部位的焊缝结构形式的模型,进行了应力分析。并在测定不同参数的管节点相贯焊缝处应力集中系数的基础上,合理地设计了九种不同参数的T型管节点相贯焊缝的外形尺寸。这对海洋平台管节点抗脆性破坏性能和改善平台管节点相贯焊缝的疲劳寿命有着重要的作用。  相似文献   

2.
本文对T型管节点单内环加强后的应力分布、应力集中系数及极限承载能力进行了有限元计算和试验分析,提出了参数修正方法,为加强管节点的设计计算提供了依据。  相似文献   

3.
大型LNG船典型节点疲劳寿命谱分析评估   总被引:2,自引:0,他引:2  
基于S-N曲线和Miner线性累计损伤理论,采用谱分析方法对16万立方薄膜型LNG船典型节点的疲劳寿命进行了评估。建立全船结构有限元分析模型及典型装载工况下的水动力计算模型,给出不同浪向角及波浪频率下典型节点的热点应力传递函数及分布带宽系数,采用北大西洋波浪散布图,得到各典型节点的疲劳寿命结果,并对各节点的疲劳寿命进行评估和分析。分析结果可为同类LNG船的开发设计提供参考依据。  相似文献   

4.
序号论文名称作者姓名俐筋混凝土平台的非线性有限单元法分析’立管的应力特性及计算方法T型管节点单内环加强强度分析我国海洋平台管节点应力分析的研究工作管状接头的激光散斑应变测量T型管结点在支管荷重作用下管径比对交贯 线上应力分布的形响焊接俐接头在海水中的常幅疲劳试验焊接钢接头在空气中的常幅疲劳试验桩基导管架平台结构一桩一土共同作用的计 算方法及计算机程序关于管节点疲劳寿命估算的断裂力学分析方 法的研究海洋工程中却贝(ch合rpy)冲击试验温度 的确定海洋平台刚架结构的总体稳定性分析浅基础在偏心和倾斜荷载作用下的…  相似文献   

5.
本文对“勘探三号”半潜式平台的典型节点进行了有限元应力分析。文中对该典型节点进行了粗、细两种网格的计算,得到了相应的热点位置和应力集中系数。当有了平台总强度计算的节点应力后,根据文中定义的设计应力集中系数就可以方便地得到节点热点处的应力值,这对平台节点设计和校核是有实用意义的。  相似文献   

6.
本文借助于SAP5结构计算程序,编制了T型管结点网格自动生成程序,并取不同管径比β进行了有限元计算.求得了应力集中系数沿交贯线的分布。通过Fourier分析,对展开式取不同阶的三角多项式进行误差比较,最后采用数据回归技术,导出了工程上实用的,既方便又有一定精度的以β为变量的参数方程. 将有关的参数方程同本文的分布函数相结合,可以计算任意几何参数的管结点。在处理组合荷重作用下的交贯线上疲劳应力计算问题时,应用本文给出的二项三角函数表达式,必将比现行的处理办法,在计算精度上得到明显的改善。  相似文献   

7.
非常规管节点疲劳寿命分析与计算   总被引:6,自引:1,他引:6  
对非常规管节点的疲劳寿命进行了分析研究,用SESAM计算疲劳载荷,应用精细有限元分析计算热点应力,用规范的S—N曲线计算管节点的疲劳寿命。通过实例计算表明,这些处理对非常规管节点疲劳寿命分析与计算是很有效的。  相似文献   

8.
冯琦  谭家华 《海洋工程》2006,24(2):77-81
对用套管加强的T型管节点在平面外弯矩作用下的极限强度作了参数化分析。同时将相应的套管以及管节点的几何参数对极限强度的影响进行评估,并且和未加强的T型管节点作了比较。在计算结果中可以得出在管节点的弦管和撑管的连接处用合适的套管加强,可以将管节点在平面外弯矩作用下的极限强度提高到3倍多。  相似文献   

9.
TY型管节点局部柔度的参数分析及试验研究   总被引:2,自引:1,他引:2  
由于海洋平台管节点的局部柔度对平台结构的静动力性能有重要影响,如何确定各类管节点的局部柔度成为一个重要的研究课题。本文用半解析方法计算了海洋平台中一类常见的管节点──TY型管节点的局部柔度,并用回归方法得出了计算TY型管节点局部柔度矩阵中各元素的参数公式。本文还介绍了对一组TY型管节点PVC塑料模型进行的局部柔度试验。参数公式计算结果与模型试验结果的比较表明,本文得出的参数公式是基本可靠的,建议可在海洋平台总体结构分析中使用。  相似文献   

10.
为了有效地考虑浮体慢漂运动对钢悬链线立管疲劳损伤的影响,提出了波频和慢漂运动组合作用下钢悬链线立管疲劳损伤简化计算的位置组合叠加法。其核心是:基于浮体慢漂运动概率分布选取若干典型慢漂位置,进行波频运动作用下钢悬链线立管动力响应分析;根据钢悬链线立管运动位置变化特征,截取若干慢漂位置对应的波频应力时程叠加到慢漂应力时程上,得到波频和慢漂运动的组合应力时程;编写基于雨流计数法的MATLAB程序处理立管各节点应力,采用海水环境下Do E.E型S-N曲线和Palmgren-Miner累积损伤准则计算立管各节点疲劳损伤。应用位置组合叠加法对某海域500 m水深的立管进行了疲劳分析,并与全耦合法、权重组合叠加法以及波频和慢漂疲劳损伤简单相加法的结果进行了对比,结果表明该方法具有较高的精度和效率。此外,进行了区域设定系数、波浪高度、波浪周期和土壤表面剪切强度等参数对组合作用下立管疲劳损伤的敏感性分析。  相似文献   

11.
- Stress concentration analysis of multiplanar tubular DT joints plays an important role in the fatigue design of offshore platforms. A semi-analytic method for stress analysis under the condition of any loads is briefly introduced in the paper. Nineteen multiplanar tubular DT joints with one of two braces of the same dimension subjected to axial loads and out- of- plane bending moments are computed for parametric stress analysis by using the present method. The influence of geometrical parameters on the stresses of multiplanar tubular DT joints is discussed and compared with corresponding uniplanar T joints. The regression formulae for the stress at hot spot of multiplanar DT joints are found by modification of SCF of corresponding uniplanar T joints. The parametric formulae for the maximum stress by superposition. Finally, the influences of stiffening effect and load-interaction effect on the maximum stress of DT joints are discussed.  相似文献   

12.
Truss Spar平台在风、浪、流的作用下,结构受力十分复杂,准确分析其疲劳强度相当困难。通过建立Truss Spar平台三维有限元模型,利用HydroD软件进行载荷预报、波浪搜索,得到产生最大应力幅响应的最不利浪向和相位角。运用Sestra软件进行整体有限元分析,得到的结果作为桁架管节点细化模型的边界条件,再用Nastran软件进行局部分析求得节点的热点应力,修正壁厚影响。最后根据DNV规范的S-N曲线计算了管节点的疲劳寿命。  相似文献   

13.
- The formulation for the stress concentration matrix of multiplanar tubular joint with braces subjected to combined load is established in this paper. The formulations for SCF values of multiplanar tubular joints are compared with those by Wordsworth and Efthymiou. The stiffening effect and load-interaction effect are discussed. A spatial offshore jacket with braces subjected to combined load is computed as a numerical example. The maximum stress of each multiplanar tubular joint and its location are found through SCF matrix. Finally, the difference between the maximum stresses of multiplanar tubular joints and their corresponding uniplanar tubular joints are discussed.  相似文献   

14.
Since a self-elevating platform often works in water for a long time,the lattice leg is largely influenced by wave and current.The amplitude of leg joint stresses is a very important factor for the fatigue life of the platform.However,there are not many researches having been done on the mechanism and dynamic stress analysis of these leg joints.This paper focuses on the dynamic stress analysis and suppression methods of the leg joints of self-elevating platforms.Firstly,the dynamic stresses of the lattice leg joints are analyzed for a self-elevating platform by use of the 5th-order Stokes wave theory.Secondly,the axial and bending stresses are studied due to their large contributions to total stresses.And then,different joint types are considered and the leg-hull interface stiffness is analyzed for the improvement of the joint dynamic stress amplitude.Finally,some useful conclusions are drawn for the optimization design of the self-elevating platform.  相似文献   

15.
In the present study, the dynamic and fatigue characteristics of two types of stress joints are investigated under ocean environmental condition. Connected with the riser and the platform, stress joint at the vessel hang-off position should be one of the main critical design challenges for a steel catenary riser (SCR) in deepwater. When the riser is under a high pressure and deepwater working condition, the stress state for the joint is more complex, and the fatigue damage is easy to occur at this position. Stress joint discussed in this paper includes two types: Tapered Stress Joint (TSJ) and Sleeved Stress Joint (SSJ), and multiaxial fatigue analysis results are given for comparison. Global dynamic analysis for an SCR is performed first, and then the local boundary conditions obtained from the previous analysis are applied to the stress joint FE model for the later dynamic and multiaxial fatigue analysis. Results indicate that the stress level is far lower than the yield limit of material and the damage induced by fatigue needs more attention. Besides, the damage character of the two types of stress joints differs: for TSJ, the place where the stress joint connects with the riser is easy to occur fatigue damage; for SSJ, the most probable position is at the place where the end of the inner sleeve pipe contacts with the riser body. Compared with SSJ, TSJ shows a higher stress level but better fatigue performance, and it will have a higher material cost. In consideration of various factors, designers should choose the most suitable type and also geometric parameters.  相似文献   

16.
Economy and ice-resistance are two factors that must be considered in the design of offshore oil platforms in the Bohai Gulf. This paper focuses on the optimal design of ice-resistant offshore jacket platforms in the Bohai Gulf in consideration of fatigue life of tubular joints, with the minimum initial weight and satisfying dynamic properties. An efficient fatigue analysis procedure based on spectral analysis is proposed, in which a hybrid finite element model is adopted to simulate the jacket platform and the tubular joints, and the pseudo-excitation method is used to calculate the power spectral density of the hot spot stress. Finally, a practical jacket platform with an ice-breaking cone in the Bohai Gulf is optimized, and the results demonstrate that the fatigue life of tubular joints could be improved and the weight of jackets decreased simultaneously.  相似文献   

17.
In engineering practice,tubular X-joints have been widely used in offshore structures.The fatigue failure of tubular X-joints in offshore engineering is mainly caused by axial tensile stress.In this study,the stress concentration factor distribution along the weld toe in the hot spot stress region for tubular X-joints subject to axial loads have been analyzed by use of finite element method.Through numerical analysis,it has been found that the peak stress concentration factor is located at the saddle position.Thereafter,80 models have been analyzed,and the effect of the geometric parameters of a tubular X-joint on the stress concentration factor has been investigated.Based on the experimental values of the numerical stress concentration factor,a parametric equation to calculate the stress concentration factor of tubular X-joints has been proposed.The accuracy of this equation has been verified against the requirement of the Fatigue Guidance Review Panel,and the proposed equation is found capable of producing reasonably accurate stress concentration factor values for tubular X-joints subject to axial loads.  相似文献   

18.
Recently, a mesh-size insensitive structural stress definition (Battelle structural stress method) has been proposed. This method gives a stress state at a weld toe with a relatively coarse mesh, such as up to 2t (t=plate thickness) or irregular mesh shapes. The structural stress definition is based on the elementary structural mechanics theory and provides an effective measure of a stress state in front of a weld toe. In this present study, a fatigue strength assessment was carried out for a side shell connection of a container vessel using both the hot spot stress and the structural stress methods. A consistent approach to computing extrapolated hot spot stress for design purposes based on converged hot spot stresses is described and current fatigue guidance is evaluated. Fatigue strength predicted by the two methods, i.e. hot spot stress and structural stress approaches, at hot spot locations of a typical ship structure are compared and discussed.  相似文献   

19.
胡奇  解德 《海洋工程》2014,32(6):24-30
FPSO在海洋环境中频繁地进行装载与卸载操作,使FPSO船体结构产生较大的应力幅值,尤其是承受货油压力的内底纵骨。由于局部的应力集中,应力幅值超过材料的屈服强度,其装卸载次数小于104时,结构将产生低周疲劳。研究一种新的计算方法,根据Neuber假设进行塑性修正,通过应变范围得到伪热点应力范围,并确定热点应力与伪热点应力之间的关系。推导出一种新的S-N曲线作为低周疲劳的设计曲线,以伪热点应力作为计算量来预测低周疲劳寿命,降低了船体结构低周疲劳寿命计算的难度。  相似文献   

20.
In this paper, results of comprehensive finite element (FE) analyses carried out on 81 generated models of tubular K-joints are presented. Results of FE models were verified against experimental data and parametric equations. The fatigue life of a tubular joint, which is commonly found in offshore industry, is not only dependent on the value of hot-spot stress (HSS), but is also significantly influenced by the through-the-thickness stress distribution characterized by the degree of bending (DoB). Data extracted from FE analyses was used to study the effects of geometrical parameters on the DoB values in tubular K-joints subjected to two types of out-of-plane bending (OPB) moment loads. The determination of DoB values in a tubular joint is essential for improving the accuracy of fatigue life estimation using the stress-life (S–N) method and particularly for predicting the fatigue crack growth based on the fracture mechanics (FM) approach. Geometrically parametric investigation was followed by a set of nonlinear regression analyses to develop DoB parametric formulas for the fatigue analysis of K-joints under OPB loadings.  相似文献   

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