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1.
为降低甚至消除漩涡脱落引起的顶张力立管振动响应从而提高其疲劳寿命,设计了五种型式的涡激振动抑振装置,并在中国海洋大学物理海洋实验室对装有抑振装置的模型立管进行了实验研究.得到了模型立管在几种不同流速下顺流向和横向涡激振动应变时程曲线,同时为了对比分析也测量了没有安装抑振装置的裸管的响应曲线.对比分析了三种外流流速下抑振装置对立管涡激振动响应的影响,结果表明各种抑振装置对立管顺流向和横向涡激振动幅值和频率都有不同程度的降低,但其影响和有效性各不相同.  相似文献   

2.
高云  宗智  周力  曹静 《船舶力学》2012,(8):943-953
针对钢悬链式立管的结构特性,采用了简化后的振动模型。先对立管进行了模态分析;再根据立管的模态特性结合环境水流参数,采用模态叠加法对立管进行了涡激振动疲劳损伤分析。分析过程中,通过改变流速大小、立管壁厚、立管外径、内部介质以及抑制立管涡激振动的螺旋列板长度等参数,对立管的涡激振动疲劳损伤进行了相应的参数分析。结果表明:立管疲劳损伤随水流速度的增大、立管外径的增大以及内部介质密度的降低呈现上升趋势,但是壁厚变化对立管疲劳损伤大小影响却不显著。  相似文献   

3.
剪切来流下柔性立管涡激振动抑制装置试验研究   总被引:1,自引:0,他引:1  
任铁  高云  付世晓  杨家栋  赵勇 《船舶力学》2016,20(4):497-507
文章针对柔性立管螺旋列板抑制装置在剪切流场中的涡激振动响应特性进行了试验研究,试验过程中通过旋转臂架从而形成相对剪切来流。通过测试得到的应变数据,基于模态叠加法,可得到立管的位移响应等参数。试验中针对螺旋列板的螺距和鳍高的变化进行了分析,系统地研究了不同螺旋列板状态下立管的主导频率、主导模态、无量纲振幅比以及疲劳损伤等参数。研究结果表明:螺旋列板可以很好地抑制立管的涡激振动响应;与螺距相比,鳍高对立管涡激振动响应会带来更大的影响;剪切流场中立管螺距恒定为5.0D(D为立管外径)时,鳍高为0.15D时的立管具有最好的抑制效果。  相似文献   

4.
综合考虑立管顺流向及横流向的耦合运动,基于van der Pol理论建立深海顶张力立管涡激振动分析模型,采用有限单元法及Newmark-β法编程求解。利用所建模型对深海实尺寸顶张力钻井立管非锁频工况下的涡激振动响应及参数影响进行分析,结果表明:立管两向均表现为高阶、多模态振动形式,顺流向振动最大峰值频率约为横流向的2倍;相比均匀流,剪切流下立管振动位移及参与振动模态数均增加,立管振动主控模态发生变化;海流流速及顶张力的变化改变了立管振动位移、参与振动模态数及主控模态;随着立管外径增加,立管振动最大峰值频率及参与振动模态数均不断减小,立管振动位移变化较小。  相似文献   

5.
综合考虑立管顺流向及横流向的耦合运动,基于van der Pol理论建立深海顶张力立管涡激振动分析模型,采用有限单元法及Newmark-β法编程求解。利用所建模型对深海实尺寸顶张力钻井立管非锁频工况下的涡激振动响应及参数影响进行分析,结果表明:立管两向均表现为高阶、多模态振动形式,顺流向振动最大峰值频率约为横流向的2倍;相比均匀流,剪切流下立管振动位移及参与振动模态数均增加,立管振动主控模态发生变化;海流流速及顶张力的变化改变了立管振动位移、参与振动模态数及主控模态;随着立管外径增加,立管振动最大峰值频率及参与振动模态数均不断减小,立管振动位移变化较小。  相似文献   

6.
深海立管涡激振动疲劳损伤影响因素分析   总被引:2,自引:2,他引:0  
根据我国南海、墨西哥湾和西非海域的流速沿深度方向的分布规律,利用涡激振动预报程序计算了立管在不同参数下的动力响应.在此基础上计算了立管沿长度方向涡激振动引起的疲劳损伤.分别讨论了立管顶部预张力、管内流体密度、管外流速分布、立管外径、立管壁厚等参数的变化对疲劳损伤的影响.结果显示立管顶部预张力、管外流速分布、立管外径对疲劳损伤的影响非常明显,而管内流体密度和立管壁厚因其变化范围有限,对疲劳损伤的影响没有上述三个参数显著.  相似文献   

7.
对于深水立管,研究其在均匀流作用下,考虑流固耦合时的涡激非线性动力响应及疲劳损伤分析。采用有限元方法,建立立管模型。计算均匀流产生的升力时,考虑流体速度与立管之间的相对速度。利用Newmark-β法对立管进行时域内的涡激响应分析,同时通过幅值谱对立管进行频域内的分析,得到涡激振动的主要模态。  相似文献   

8.
康庄  吴莹  张嘉  秦伟 《船海工程》2013,(5):166-170
针对西非海域的塔式立管,考虑沿水深变化的不同流速截面,分析塔式立管在不同参数下的涡激振动响应及疲劳损伤沿管分布,讨论立管顶部张力、管内流体密度、立管外径、立管壁厚和SHEAR7能量阈值等参数的变化对疲劳损伤的影响.结果显示,由于制造和安装误差等因素导致这些参数的改变,对结构的涡激振动疲劳损伤影响显著,应该在工程设计中引起注意.  相似文献   

9.
悬链线立管会在半潜平台运动带动下出现涡激振动现象,对立管疲劳寿命造成影响.借助海工结构物动力分析软件Orcaflex建立立管模型,使用Iwan-Blevins尾流振子模型进行数值模拟.通过与试验结果对比验证了该方法的可行性.同时建立实尺度悬链线立管模型,并考虑背景海流的影响,分析平台垂荡、纵荡运动下的立管涡激振动响应和疲劳损伤.研究表明,平台运动产生的非定常流场将引起悬链线立管发生涡激振动现象,并在背景洋流激励的基础上增大疲劳损伤,在立管结构实际工程设计时应予以关注.  相似文献   

10.
为研究剪切流作用下立管的涡激振动问题,文章建立了三维立管的涡激动力响应方程,顺流方向的力通过Morison方程求解;横向涡激力采用改进的尾流阵子模型求解,考虑了附加质量的变化;轴向力的计算考虑平台升沉运动的影响。采用有限单元法离散控制方程,离散后的方程采用Newmark-β法在时域求解。在此基础上,研究了剪切流作用下立管的多模态涡激振动响应,讨论了剪切参数对立管涡激动力响应的影响,并比较了均匀流和剪切流条件下立管不同的响应特征。结果表明,剪切参数对立管的涡激响应动力响应有很大的影响,剪切流条件下立管呈现的多模态响应极为复杂,与均匀来流条件下的振幅和频率响应特点明显不同。  相似文献   

11.
Helical strakes are known to reduce and even eliminate the oscillation amplitude of vortex-induced vibrations (VIV). This reduction will increase the fatigue life. The optimum length and position of the helical strakes for a given riser will vary with the current profile.

The purpose of the present paper is to describe how data from VIV experiments with suppressing devices like fairings and strakes can be implemented into a theoretical VIV model. The computer program is based on an empirical model for calculation of VIV. Suppression devices can be accounted for by using user-defined data for hydrodynamic coefficients, i.e. lift and damping coefficients, for the selected segments.

The effect of strakes on fatigue damage due to cross flow VIV is illustrated for a vertical riser exposed to sheared and uniform current. Comparison of measured and calculated fatigue life is performed for a model riser equipped with helical strakes. A systematic study of length of a section with strakes for a set of current profiles is done and the results are also presented.  相似文献   


12.
孙丽萍  徐莹  羊卫  付森 《船舶工程》2016,38(10):1-5
自由站立式立管可作为南海油气开发的立管形式。根据设计参数建立自由站立式立管系统模型,根据南海某油田环境参数校核立管各工况下的强度结果并进行疲劳分析,探讨自由站立式立管动态强度与疲劳特性并验证是否满足规范要求。分析结果表明:该立管设计满足规范中的强度与疲劳要求,且疲劳性能较好;立管等效应力最大处为立管主体顶部应力节下端;最危险浪流方向为沿立管向平台方向;立管主体应力水平受平台运动影响较小,受顶部张紧力以及海流大小影响较大;疲劳损伤最大处位于立管主体顶部,且涡激疲劳损伤大于浪致疲劳损伤。  相似文献   

13.
A semi-empirical method for time domain simulation of vortex-induced vibrations (VIV) is used to calculate the in-line and cross-flow fatigue damage of a tensioned riser in uniform and sheared flow. Simulations are run for flow velocities ranging from 0.3 m/s to 2.4 m/s, and a detailed comparison with experimental observations is performed. Results are reported in terms of dominating frequency, mode of vibration and mean of r.m.s. of displacement, as well as fatigue damage distribution along the length of the structure and maximum fatigue damage rates for each case. Fatigue damage is calculated by rainflow counting of the strain time series together with an idealized S–N curve with slope m = 3. The results show that the model reproduces the measured fatigue damage with a satisfactory level of realism, using a consistent set of parameters. This indicates that the model is usable for calculation of riser VIV fatigue damage in various current conditions, assuming the Reynolds number is in the subcritical range.  相似文献   

14.
The fatigue damage of a long deepwater riser undergoing in-line and cross-flow vortex-induced vibration (VIV) in deepwater is numerically studied using pseudo-excitation method (PEM) in present paper. For evaluating the fluid–structure interaction problem of vortex-induced vibration of deepwater riser at high Reynolds number, the strip theory is employed in this paper, and the discrete vortex method (DVM) is used to calculate the VIV of each strip to obtain the load spectrum as the pseudo-excitation, while the finite volume method (FVM) is employed to evaluate the structure dynamics of a deepwater riser. The VIV is considered as a stationary random process. The response of riser to vortex induced excitation is calculated using pseudo-excitation method. The DVM model and pseudo-excitation method are both validated by comparing their numerical results with experiments. The fatigue damage of one deepwater riser is evaluated based on the Palmgren–Miner Rule.  相似文献   

15.
Under the actions of ocean currents and/or waves, deep-sea flexible risers are often subject to vortex-induced vibration (VIV). The VIV can lead to severe fatigue and structural safety issues caused by oscillatory periodic stress and large-amplitude displacement. As flexible risers have natural modes with lower frequency and higher density, a multimode VIV is likely to occur in risers under the action of ocean currents, which is considered as shear flow. To decrease the response level of the VIV of the riser actively, a multimode control approach that uses a bending moment at the top end of the riser via an LQR optimal controller is developed in this study. The dynamic equations of a flexible riser including the control bending moment in shear flow are established both in the time and state-space domains. The LQR controllers are then designed to optimize the objective function, which indicates the minimum cost of the riser's VIV response and control input energy based on the Riccati equation of the closed-loop system under the assumption that the lift coefficient distribution is constant. Finally, the VIV responses of both the original and closed-loop systems under different flow velocities are examined through numerical simulations. The results demonstrate that the designed active control approaches can effectively reduce the riser displacement/angle by approximately 71%–89% compared with that of the original system. Further, for multimode control, the presented mode-weighted control is more effective than the mode-averaged control; the decrease in displacement is approximately 1.13 times than that of the mode-averaged control. Owing to the increase in flow velocity as more and higher-order modes are excited, the VIV response of the original system decreases slightly while the frequency response gradually increases. For the closed-loop system, the response becomes smaller and more complicated, and the efficiency of the controller becomes lower at a certain flow velocity.  相似文献   

16.
深水立管在来流作用下容易产生流向和横向的周期性位移振动(VIV),这种流固耦合作用会加剧立管结构疲劳,最终导致其功能失效。之前的研究发现螺旋侧板可以有效的抑制VIV的影响,其中侧板高度和螺距等几何参数决定其抑制效率。文章主要基于CFD对不同高度螺旋侧板的立管的尾流场进行数值模拟。结果表明:在研究范围内,螺旋侧板随高度增大抑制VIV效果越好,在H=0.25D(D为立管直径)时作用最佳,但拖曳力系数明显增大,同时来流方向和螺旋侧板的夹角也会影响其抑制效率。  相似文献   

17.
应用模型试验的方法,研究了表面粗糙度对立管涡激振动响应特性的影响规律,对不同粗糙度条件下立管所受拖曳力、升力、端部张力、漩涡泄放频率、结构振动响应频率、位移响应等参数的变化规律进行了对比分析。结果表明:与立管横向振动相比,立管流向振动更早出现锁定现象,因此当折合速度较低时,立管流向振动的涡激振动响应要大于横向振动。立管张力均存在两个峰值频率,其中一个峰值频率为主导频率,与拖曳力主导频率吻合,由流向涡激振动所产生;另一个峰值频率为主导频率的一半,与升力主导频率吻合,由横向涡激振动所产生。因此可以看出:横向涡激振动与流向涡激振动通过张力作用而相互影响。与光滑立管相比,表面粗糙度降低了立管的涡激振动位移响应,减小了涡激振动的锁定区域,但提高了漩涡泄放频率。对于不同粗糙度下的粗糙立管,随着粗糙度的增加,立管的锁定区域开始点逐渐提前,锁定结束点逐渐推迟,锁定区域逐渐变宽。  相似文献   

18.
Existing VIV prediction approaches for steel catenary riser (SCR) typically employ truncation model without considering the interaction between the SCR and soil, and only allow for cross-flow (CF) VIV. In this study, a time domain approach accounting for the SCR-soil interaction is proposed to predict the CF and in-line (IL) VIV induced fatigue damage of a SCR at touchdown zone (TDZ). The hydrodynamic force resulting from the vortex shedding is modeled using the forced oscillation test data of a rigid cylinder and an empirical damping model, which are defined as functions of the non-dimensional dominant frequency and amplitude of the SCR response. Due to the coupling effect, the IL VIV force is magnified based on the CF VIV amplitude. By combining a linear hysteretic interaction model with a trench shape model, some particular phenomena during the vertical SCR-soil interaction are captured and qualitatively discussed, while for the horizontal direction, the seabed is simplified as nonlinear spring model. Based on these models, parametric studies are conducted to broaden the understanding of the sensitivity of VIV induced fatigue damage to the seabed characteristic. The results indicate trench depth, vertical and lateral stiffness, and clay suction are significantly affect the VIV induced maximum fatigue damage at TDZ.  相似文献   

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