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1.
建立一套验证船体结构与海上移动平台规范焊缝安全性的理论方法,提出了船体与海上移动平台结构焊缝应力计算的3种模型和焊缝应力计算方法,确定了焊缝强度的应力标准。通过5个板条梁和4个短柱的焊缝强度试验,验证了焊缝的强度标准、焊缝应力公式的正确性和适用性。进行了11艘船体结构焊缝应力的提取和焊接系数利用因子的计算,获得了船体结构各类角焊缝利用因子的统计结果,证明现有规范的焊接系数符合GBS的要求。  相似文献   

2.
深水半潜式钻井平台简化疲劳分析   总被引:1,自引:0,他引:1  
研究适用于中国南海的深水半潜式钻井平台结构简化疲劳分析方法。依据中国南海环境条件,计算平台结构应力响应,得到平台结构应力范围长期Weibull分布形状参数。通过结构波浪应力的长期预报,计算得到平台寿命期一遇波浪载荷,依据寿命期一遇波浪载荷计算平台结构寿命期一遇最大热点应力范围。采用简化疲劳分析方法计算平台结构疲劳寿命,用谱疲劳分析方法验证简化疲劳分析结果的准确性,证实了简化疲劳分析方法相对保守,可应用于平台的设计。  相似文献   

3.
冰激直立腿海洋平台疲劳寿命分析   总被引:1,自引:1,他引:0  
由于渤海特殊环境条件与油藏分布决定了该海域导管架油气平台属于典型的柔性抗冰结构。多年现场观测发现,该类结构存在显著的冰激振动现象。冰振不仅能激起较大的甲板加速度响应,还会引起明显的导管架管节点交变应力。在结构设计与安全保障中进行疲劳分析及寿命估计是必要的。对于直立腿抗冰结构,精确的冰激疲劳寿命计算方法还不成熟。基于多年的现场监测,首先分析了冰与直立腿抗冰结构相互作用过程;其次,提出了冰激直立腿平台的疲劳寿命分析流程;最后,选取渤海某典型直立腿平台,利用ANSYS数值模拟,对比了稳态冰力和随机冰力下结构的疲劳损伤,进而计算出疲劳寿命。本研究为寒区柔性结构抗冰设计与安全保障提供了理论基础。  相似文献   

4.
半潜平台由于结构和受力复杂,目前主要采用非线性有限元整体模型计算其扭转极限承载力,存在建模和计算时间较长、精度较差和不易收敛等问题。一方面进行半潜平台的整体有限元模型的简化研究,提高其计算效率和收敛性;另一方面基于薄壁杆件理论,将该半潜平台截面简化为单壁室截面计算其翘曲应力,提出了基于一跨模型且考虑翘曲应力影响的半潜平台约束扭转极限强度计算的简化增量迭代方法,并编制了相应的计算程序。计算结果表明,所提简化增量迭代方法计算精度较高,能很好地反应翘曲应力对半潜平台约束扭转极限强度的影响,大幅减少了计算约束扭转极限强度的时间,可用于半潜平台的设计。  相似文献   

5.
本文系统地介绍了极浅海步行坐底式钻井平台结构设计特点、步行、拖航状态的强度分析,包括外船体步行区结构、悬臂支架以及拖航漂浮时的总强度、局部强度和刚度计算,最后,介绍实船应力与变形测试及其与计算值的比较。  相似文献   

6.
从有限元的基本理论出发,对新型海洋平台裙装套筒结构进行有限元强度分析及计算。通过实例计算可知其强度、安全性、稳性等都满足规范要求,并能详细体现出结构应力和载荷特征,对模型模拟情况良好。  相似文献   

7.
半潜平台疲劳热点应力长期分布参数研究   总被引:1,自引:1,他引:0  
明确热点应力长期Weibull分布的参数是船舶与海洋工程结构应用疲劳简化分析方法的关键之一。以某深水半潜式平台为研究对象,通过整体结构有限元计算得到热点应力传递函数,结合波浪散布图计算热点应力长期分布概率函数,采用最小二乘法对热点应力长期Weibull分布进行参数估计。研究结果可为疲劳简化分析方法在半潜平台上的应用提供参考。  相似文献   

8.
近年来,随着海洋能发电装备研发工作的不断深入,其性能测试工作越来越受到人们的重视。因此,在综合分析目前我国海洋能发电装备研发现状以及海洋能发电装备测试需求的基础上,提出了海洋能发电装备现场检测平台设计方案。主要介绍了现场检测平台的基本功能和系统构成。该方案使得设计出的现场检测平台能够满足波浪能、潮流能等海洋能发电装备功率特性和电能质量特性的测试需求。被测海洋能发电装备可以是已进入实海况示范试验阶段的全比例尺或小比例尺工程样机。  相似文献   

9.
在桁架式深吃水立柱式平台(Truss Spar)运输作业的浮卸过程中,半潜驳船不断压载下潜直到Truss Spar平台自浮后拖离驳船。针对浮卸作业的双浮体状态,提出Truss Spar平台在与半潜驳船发生接触情况下的载荷计算方案并进行结构应力水平评估。基于三维势流理论及SESAM软件,考虑平台及半潜驳船双浮体之间的水动力相互影响,首先对双浮体系统进行频域下求解,得到波浪诱导载荷;然后在时域下求解波浪中双浮体的运动方程及产生的接触力;最后将这两种载荷下的结构强度分析结果进行线性叠加,得到Truss Spar平台在波浪诱导载荷及接触力联合作用下结构应力水平。对比不同波浪方向及周期下的接触力结果,研究Spar平台结构整体应力水平及高应力区域位置特点,对总体强度水平进行评估。  相似文献   

10.
海洋平台管节点局部柔度对平台结构的名义应力、变形、构件的稳定性及振动周期、模态等均有不可忽视的影响,这一现象对深水平台尤为重要。对管节点局部柔度的研究,近年来已逐渐引起了注意。本文用半解析法对T、Y型管节点在轴力与面内弯矩作用下的局部柔度进行了计算,所得的结果与国外已有的经验公式与试验结果比较,证明是足够精确的,从而证明了本文的方法可准确有效地用以确定管节点的局部柔度。为了说明管节点局部柔度对平台结构的影响,文中给出了对一简单结构分别用传统方法和计及节点局部柔度的方法计算的结果及比较。  相似文献   

11.
李美求  段梦兰  黄一 《海洋工程》2015,29(5):649-661
Jacket cutting operation is one of the most complicated and highest risk operations in the process of decommissioning offshore piled platform, the security and stability of which must be assured. In this paper, the current research on offshore structure removal and jacket cutting is introduced, on the basis of which the types of load along with the load calculation method are determined. The main influences on the stability of a jacket in cutting are analyzed. The experiment test plan is drawn by using orthogonal testing method, and the formula of critical load during the cutting procedure is deduced by differential evolution algorithm. To verify the method and results of this paper, an offshore piled platform to be decommissioned in the South China Sea is taken for an example, and the detailed schedule for jacket cutting is made with the three-dimensional finite element model of the jacket established. The natural frequency, stress, strain and stability of the jacket during cutting process are calculated, which indicates that the results of finite element analysis agree well with that of the deduced formula. The result provides the scientific reference for guaranteeing the safety of jacket in cutting operation.  相似文献   

12.
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   

13.
Offshore jacket platform is widely used as production or oil recovering platform in the shallow sea, and is also applied to the offshore wind turbine supporting structure in the recent years. The jacket structures are normally designed to be conservative and bulky according to various design codes. In this work, a structural optimization design method for jacket platform structure has been developed based on topology optimization theory. The topology optimization method is applicable at an early design stage, which can determine the initial structure and force transmission path. The whole design space is chosen as design variables, and the goal is to maximize the structural stiffness. A set of constraints based on multi-criteria design assessment is applied according to standard requirements, which includes stress, deformation, vibration and design variable constraints. The optimization results are compared with the original platform for static performance, dynamic performance and Ultimate Carrying Capacity (UCC). Results show that the optimized structure show a 13.7% reduction in the global mass, 46.31% reduction in the maximum equivalent stress, and large ultimate carrying capacity ability under the same environmental loads. It is demonstrated that the proposed topology optimization method is capable of effectively determining the optimal design of jacket platform structures.  相似文献   

14.
The target reliability index has been effectively used as the best solution to deal with the relationship between the structural safety and the optimal economy in any structural design.However,the target reliability index for offshore jacket platforms based on different sea areas in China has never been calibrated.This paper presents an approach for its calibration,and suggests many kinds of associated load cases.The uncertainties of loads and structural resistance are mainly investigated.The target reliability index for structural components,tubular joints and piles of offshore jacket platforms are discussed respectively in detail.Finally,through the calibrated results from the offshore jacket platforms of QK18-1,JZ20-2,SZ36-1 and BZ28-1 in the Bohai Bay,it is proposed to adopt 2.8 as the target reliability index of offshore jacket platforms in the Bohai Bay for a 25-year design period.The results provide significant reference for the design of offshore jacket platforms.  相似文献   

15.
The target reliability index has been effectively used as the best solution to deal with the relationship between the structural safety and the optimal economy in any structural design. However, the target reliability index for off-shore jacket platforms based on different sea areas in China has never been calibrated. This paper presents an approach for its calibration, and suggests many kinds of associated load cases. The uncertainties of loads and structural resistance are mainly investigated. The target reliability index for structural components, tubular joints and piles of offshore jacket platforms are discussed respectively in detail. Finally, through the calibrated results from the offshore jacket platforms of QK18-1, JZ20-2, SZ36-1 and BZ28-1 in the Bohai Bay, it is proposed to adopt 2.8 as the target reliability index of offshore jacket platforms in the Bohai Bay for a 25-year design period. The results provide significant reference for the design of offshore jacket platforms.  相似文献   

16.
为研究渤海海域海冰撞击导管架海洋平台的冰振响应,基于锥体冰力函数,本文建立了渤海海域的冰力作用模型。采用ANSYS有限元软件对导管架平台与海冰的相互作用进行数值模拟,开展了海冰作用下抗冰平台的静力分析及平台动力响应分析。通过与静力分析结果对比,验证了动冰力对结构响应的动力放大效应。在此基础上通过改变冰厚、冰速等海冰参数,研究了不同冰力作用周期下导管架平台的冰振响应。研究表明,海冰厚度及海冰流动速度是影响平台动力响应的主要因素,为导管架平台结构的动力优化设计提供了研究基础。  相似文献   

17.
Ding  Hong-yan  Li  Jing-yi  Le  Cong-huan  Pan  Chen  Zhang  Pu-yang 《中国海洋工程》2022,36(6):849-858

As the offshore wind turbine foundation, the four-bucket jacket foundation has a large stiffness and the structure is difficult to be damaged under seismic load. Nevertheless, the saturated subsoil of the four-bucket jacket foundation tends to be liquefied under earthquake, which greatly affects the safety of offshore wind turbine. Therefore, the seismic performance of four-bucket jacket foundation is mainly reflected in the anti-liquefaction capacity of foundation soil. In this paper, the liquefaction resistance of sandy soil of four-bucket jacket foundation for offshore wind turbine is studied. The liquefaction and dynamic response of sandy soil foundation of four-bucket jacket foundation under seismic load are obtained by carrying out the shaking table test, and the influence mechanism of four-bucket jacket foundation on the liquefaction resistance of sandy soil foundation is analyzed.

  相似文献   

18.
考虑流固耦合时的海洋平台结构非线性动力分析   总被引:11,自引:0,他引:11  
采用非线性的Morison方程,建立了考虑流固耦合时的海洋平台非线性动力方程及其时程分析方法.以一固定式导管架平台为算例,计算了考虑流固耦合时的海洋平台浪致振动响应,比较了考虑流固耦合和不考虑流固耦合时海洋平台动力响应的差异.算例表明:在较大的波浪条件下,不考虑流固耦合时的计算结果明显小于考虑流固耦合时的计算结果,因此,偏于不安全.分析认为,在极端海况条件下,考虑流固耦合的分析方法更符合实际情况.  相似文献   

19.
李晔 《海洋工程》2016,34(5):131-136
由于海洋平台结构长期处于恶劣的海洋环境中,并受到各种载荷的交互作用,结构容易产生各种形式的损伤。因此,对海洋平台进行实时监测有着十分重要的现实意义。以单筒简易导管架平台为例,主要在结构损伤的判定和定位两方面对海洋平台的实时结构健康监测进行研究,结果表明通过对结构响应信号进行小波分析,小波变换系数和小波包能量分布可以很好地定义损伤识别指标。  相似文献   

20.
For the fulfillment of the probability-based structural design for the offshore jacket platforms in the Bohai Bay, the design factors of loads, resistance and load combinations are much necessary to be calibrated according to the proposed target reliability index. Firstly, the limit states function for the offshore jacket platforms is introduced. Then, four approaches to calibrate the factors of load and resistance are presented and compared. Afterwards, the methods to calibrate the load combination factors are developed. Finally, the factors of load, resistance and load combination for the offshore jacket platforms in the Bohai Bay are calibrated and the corresponding design formulae are recommended. The results are proved to be rational in practice, and also illustrate that the proposed target reliability index for offshore jacket platforms in the Bohai Bay is also appropriate.  相似文献   

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