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1.
近岸海底管线在波浪作用下的受力情况关系着海底管线的安全运营。本文利用波浪港池物理模型试验,研究了斜向规则波作用下海底管线断面和管线沿程波浪力特性,分析了波浪入射方向与管线轴线夹角α及波浪要素对海底管线所受波浪力的影响,探讨了管线冲刷与所受波浪力之间的关系。试验结果表明:管线水平力在α=60°时达到最大,而上升力在α=45°时达到最大,并且从力的大小来看水平力比上升力大。随着角度增大,管线压力沿程变化幅度先增大再减小,α在60°时管线上游端压力最大;在45°时管线压力沿程变化呈波浪型,从上游往下游增减交替变化。随着冲刷的发展,管线下方受力最大值逐渐增大,管线前后方压力差值也逐渐增大。  相似文献   

2.
基于海底管线周围流场复杂,管线运行过程中易于出现冲刷悬空破坏等诸多特征。本文根据导流板作用下海底管线的冲刷防护机理,提出了一种透空导流板与海底管线结合的防冲刷措施。通过量纲分析得到了影响海底管线冲刷深度的无量纲公式,并通过物理模型试验,研究了单向流作用时,不同流速、不同管孔比、不同透水比的工况下透空导流板对海底管线的冲刷防护的影响。研究发现,由于透空导流板的存在,泥沙受到的推移力减小,导致泥沙淤积,海底管线的冲坑深度小于无导流板防护的冲坑深度,透空导流板防护的管线最大冲刷深度在管轴线前0.3 D处,且在管线下方冲刷坑深度明显减小。基于试验资料分析,拟合得到了平衡冲刷深度的计算公式,其公式与实测资料拟合较好,说明该公式具有较好的适用性。  相似文献   

3.
海底输油管线是海洋油气田开发的生命线工程,在复杂的海洋环境中易发生破坏.为使管线实现自埋防护,提出用柔性材料代替刚性导流板安装在管线顶部,不仅可以增加阻水面积,加大冲刷深度和范围,而且可以减缓刚性导流板对管线上部水流的扰动强度和尾流涡旋的扰动强度,减小管线的振动.利用力学关系由变形方程推导出海底管线与海底间距离为零以及不为零情况下柔性导流板变形的二次曲面方程和自由端最大挠度.在单向流条件下将不同材料不同长度的柔性导流板安装在管线中轴上方开展试验研究,测量柔性导流板在水流作用下的变形曲面.对比分析利用公式计算柔性导流板的自由端最大挠度和曲面变形数据与试验结果,发现两者吻合较好.  相似文献   

4.
刘大方  刘臻  张国梁 《海岸工程》2020,39(4):237-245
基于计算流体力学软件的三维数值模拟技术,分析了碟形越浪式波能发电装置的越浪性能,通过构建基于水气两相VOF(Volume of Fluid)模型的三维数值波浪水槽对该装置进行三维数值模拟研究,数值计算结果与物理试验结果相互对比验证较为吻合,验证了所构建的三维数值波浪水槽的可靠性,通过考察装置的坡度、导流叶片个数、干舷高度对越浪性能的影响确定装置的最优结构参数。结果表明,在装置的斜坡面边缘增加回流板可减少波浪的反射,提高装置的越浪性能。在数值模拟中将装置的斜坡面边缘处安装回流板对碟形越浪式波能发电装置参数进行优化,通过分析回流板的长度对装置越浪性能的影响来探索最优回流板长度。  相似文献   

5.
波浪对透空外双壁筒柱的绕射   总被引:3,自引:2,他引:3  
滕斌  韩凌 《海洋工程》2001,19(1):32-37
应用透空壁内流体速度与两壁间压力差成正比的线性模型,建立了外壁透空的双筒圆柱对波浪绕射的解析解。通过数值计算研究了外壁透空率的大小、内外柱半径之比等因素对桩柱上总波浪作用力和波面高度的影响。数值结果表明圆柱外壁透空系数的增加,将明显地降低圆柱周围的波浪高度和圆柱上的波浪力;内外柱径之比的大小对波浪力和波高的最大值无太大影响,而对波浪力剧烈衰减区的位置和波高的振荡周期有决定作用。  相似文献   

6.
刘勇  李玉成  滕斌  吴浩 《海洋学报》2008,30(2):137-146
基于线性势流假定,对斜向波作用下带横隔板局部开孔沉箱防波堤的水平波浪力进行了理论研究。给出了开孔沉箱法向水平力和横隔板受力的理论计算方法,在极限情况下波浪力的计算结果与文献中的已有结果一致。利用数值算例分析了开孔沉箱总水平力的主要影响因素。开孔沉箱法向总水平力的减小主要集中于结构上半部分波浪影响范围以内。增加单个开孔沉箱的长度有利于减小结构所受总水平波浪力。当波浪入射角或沉箱前开孔墙孔隙影响系数幅值较大时,开孔沉箱横隔板上总水平力的最大值要超过相应的沉箱法向总水平力,此时要注意横隔板的强度问题。  相似文献   

7.
接近海底水平管的波浪力和C_D,C_M,C_L值的实验研究   总被引:2,自引:0,他引:2  
通过模型实验,对接近海底的水平管在波浪作用下的受力进行了分析研究。在诸数据分析方法中采用一种更稳定的最小二乘加权平均值法。文中计算了距海底不同高度水平管的力系数C_D、C_M和C_L值,发现随水平管逐渐接近海底,各力系数急剧增大,当相对缝隙度ξ(e/D)=0.1时,达最大值,并发现在本实验范围内,升力频率为入射波频率的2倍。结果中还给出了力系数随参数K_c数和ξ值的变化曲线。  相似文献   

8.
于珍  李雪艳  程志  孟钰婕 《海洋工程》2023,41(2):132-143
鉴于双弧板式透空堤的消浪性能仍不理想,提出了一种潜堤—双弧板组合结构,并基于OpenFOAM软件建立了波浪与该结构相互作用的数值模型,采用试验结果对所建数值模型进行验证。在此基础上,讨论了该新型结构的消浪特性、波压力分布特征以及所受波浪力的影响因素。结果表明,透射系数随相对板宽的增大而减小,反射系数则相反。透射与反射系数随相对潜深的变化较为显著。当结构位于静水位上方(即相对潜深为-0.05)时,透射系数最小而反射系数最大;当结构位于静水位下方(即相对潜深为0.05)时,透射系数最大而反射系数最小。该组合结构两块弧板上下表面的正负压力变化关于横轴近似对称,不同测点处的压力值差异显著。水平波浪力与垂直波浪力的变化趋势大致相似,但垂直波浪力远大于水平波浪力。研究结果可为其工程应用提供理论指导与技术支撑。  相似文献   

9.
浅水区圆柱墩群上的非线性波浪力   总被引:1,自引:0,他引:1  
本文基于一阶近似椭圆余弦波理论研究了浅水区非线性波浪对圆柱墩群的绕射作用,推得了计算圆柱墩群上的非线性波浪力的计算公式。为验证所得的理论成果,在大连理工大学沿岸工程国家重点实验室的波浪槽内进行了模型试验,试验的波浪范围,其特征波周期T(g/d)~(1/2)=8.08~22.86,特征波高H/d=0.1~0.45.理论计算结果与试验结果吻合良好.研究表明,浅水区圆柱墩群上的非线性波浪力较之通常采用线性波理论的计算结果为大,其增大值随波浪非线性的增强而增大,可达相当大的数值。在本文计算和试验的范围内,最大可增大至4倍以上。建议当T(g/d)~(1/2)≥8时,应采用椭圆余弦波理论来计算波浪力。  相似文献   

10.
有顶板开孔沉箱所受波浪力的数值分析   总被引:1,自引:1,他引:0  
陈雪峰  李玉成  滕斌 《海洋学报》2006,28(3):133-138
利用流体体积(VOF)方法并结合k-ε模型以及等温状态下的气体状态方程数值计算规则波对有顶板开孔沉箱的作用,将数值计算结果与物理模型试验数据分别对总水平力、前开孔板和后实体板的压力分布以及顶板总力等物理量进行对比,验证了所建立的数学模型和数值计算方法的有效性和可靠性,为分析有顶板开孔沉箱的波浪力提供了有效的计算方法.  相似文献   

11.
The spoiler is a kind of device to disturb current and promote burying.At present,all submarine pipeline spoilers at home and abroad are parallel spoilers,that is,the plane of the spoiler is parallel to the vertical plane of the pipeline axis.According to the results of indoor experiments,when the pipeline with the forward spoiler is installed perpendicular to the direction of water flow,the spoiler will accelerate the seabed erosion and cause the pipeline to endure downward pressure,which will eventually cause the pipeline self-buried to form a protection.However,when the pipeline direction is consistent with the flow direction,the self-buried behavior and protective effect is vanished.By aiming at the defect that the forward spoiler cannot be self-buried when the direction of the pipeline and the flow are basically parallel,the spoiler burying aid device perpendicular to the pipeline axis has been innovatively developed,and the hydrodynamic changes and sediment erosion characteristics near the pipeline after the installation of the device were studied based on the experiment.Results reveal that although the perpendicular spoiler cannot generate downforce,it can greatly increase the turbulent kinetic energy of the flow and the rate of sediment erosion.The larger the angle between the pipeline axis and the spoiler plane is,the larger the increase in turbulent energy will be.The increase in turbulent energy near the bed surface can reach up about 70%when the angle is 90°,while serious sediment erosion mainly occurs along both sides of the pipeline with a distance of about 2?4 times the pipe diameter.In the future,we can further explore the influence of the perpendicular spoiler size and installation position on the pipeline downforce and the effect of burying promotion.At the same time,field tests on the perpendicular spoiler burying aid device currently developed will conduct to observe the actual effect of perpendicular spoiler promoting pipeline scouring and burying,and improve submarine pipeline safety protection technology.  相似文献   

12.
从管道尾流区泥沙颗粒的受力平衡着手,探讨了管道冲刷的临界压力差。在此基础上,提出了一种防止或减少管道冲刷的新方法,即在管道下方安装柔性阻流器。通过物理模型试验,研究了单向恒定流及规则波作用下,柔性阻流器对管道两侧床面压力、冲刷深度的影响。试验结果表明:柔性阻流器的安装能明显减小管道两侧床面的压力差。在单向恒定流作用下,管道的冲刷深度随阻流器长度的增加而减小;当阻流器达到临界长度时,冲刷消失。规则波时,因阻流器的扰动作用,冲刷深度有所增加;但随阻流器长度的增加,其扰动作用减小,对床面的防护作用增加,因而冲刷深度减小。  相似文献   

13.
海底管道阻流板(Spoiler)自沉埋技术是一种新型管道自埋技术,为深入了解其作用机制及其效果,本文通过分析安装有阻流板的杭州湾海底管道历年检测资料,结合管道附近海域海床、潮流动力特性,深入探讨了阻流板装置在实际工程中的运行效果,分析了其作用机制及其适用条件。研究发现安装阻流板装置的杭州湾海底管道在往复潮流作用下逐渐埋入海床,其埋入段长度由2005年的50%增加到2013年的80%以上,而且平均埋入深度超过2.6 m,自埋效果较好;而在管道路由与海流平行段或管道敷设于抗冲刷强海床上时,阻流板作用不能有效发挥,管道仍然呈现裸露状态。  相似文献   

14.
Wave-induced liquefaction in a porous seabed around submarine pipeline may cause catastrophic consequences such as large horizontal displacements of pipelines on the seabed, sinking or floatation of buried pipelines. Most previous studies in relation to the wave and seabed interactions with embedded pipeline dealt with the wave-induced instaneous seabed response and possible resulting momentary liquefaction (where the soil is liquefied instantaneously during the passage of a wave trough), using theory of poro-elasticity. Studies for the interactions between a buried pipeline and a soil undergoing build-up of pore pressure and residual liquefaction have been comparatively rare. In this paper, this complicated process was investigated by using a new developed integrated numerical model with RANS (Reynolds averaged Navier–Stokes) equations used for governing the incompressible flow in the wave field and Biot consolidation equations used for linking the solid–pore fluid interactions in a porous seabed with embedded pipeline. Regarding the wave-induced residual soil response, a two-dimensional poro-elastoplastic solution with the new definition of the source term was developed, where the pre-consolidation analysis of seabed foundation under gravitational forces including the body forces of a pipeline was incorporated. The proposed numerical model was verified with laboratory experiment to demonstrate its accuracy and effectiveness. The numerical results indicate that residual liquefaction is more likely to occur in the vicinity of the pipeline compared to that in the far-field. The inclusion of body forces of a pipeline in the pre-consolidation analysis of seabed foundation significantly affects the potential for residual liquefaction in the vicinity of the pipeline, especially for a shallow-embedded case. Parametric studies reveal that the gradients of maximum liquefaction depth with various wave and soil characteristics become steeper as pipeline burial depth decreases.  相似文献   

15.
Modelling of flow around a near-bed pipeline with a spoiler   总被引:1,自引:0,他引:1  
L. Cheng  L. W. Chew 《Ocean Engineering》2003,30(13):1595-1611
Flow around a pipeline with and without a spoiler near a smooth wall is simulated by solving the Navier–Stokes equations. Finite-difference formulation with a second-order upwind scheme in a curvilinear coordinate system is employed. The influences of the spoiler on hydrodynamic forces, pressure distribution, vortex shedding frequency, velocity profile under the pipe, as well as shear stress on the wall are investigated. The attachment of a spoiler significantly increases drag, root-mean-square (RMS) lift, flow through the gap between the pipe and the wall and shear stress on the seabed around the pipe. The spoiler also generates a non-zero mean downward force on the pipeline, which may enhance the self-burial of the pipeline.  相似文献   

16.
In this paper, a numerical model is established for simulating the wave forces on a submarine pipeline. A set of two-dimensional Navier–Stokes equations is discretized numerically with a finite volume method in a moving mesh system. After each time step, the mesh is modified according to the changed wave surface boundary. The deffered correction second-order upwind scheme (SUDC) is adopted here to discretize the convective fluxes. The effects of the clearance between the pipeline and the seabed, water depth and wave height on wave forces are studied, respectively. The results by the numerical simulation agree well with the experimental data and theory value.  相似文献   

17.
海底管线上波浪力的大涡模拟及三步有限元数值模拟   总被引:6,自引:0,他引:6  
应用三步有限元法结合大涡模拟方法(LES)离散非定常不可压流动的Navier-Stokes方程,模拟了波浪场中海底管线周围流场及其受力情况,并把数值模拟的结果与物理实验的实测结果进行了比较,两者符合较好。为了检验三维效应的影响,同时进行了二维和三维流场的数值模拟。  相似文献   

18.
臧志鹏  许振  邹星  侯静 《海洋工程》2023,41(4):114-126
以往的海底管道落锚撞击防护数值模拟主要为单一保护层模型,这里则针对块石+混凝土排垫复合方案建立模型并开展防护性能研究。基于ABAQUS建立有限元数值模型,模拟了落锚、海底管道、海床土体、块石层和混凝土排垫组成的复杂系统相互作用,研究了管道壁厚、内压,落锚质量和撞击速度等因素对管道应变极值和管体凹陷变形的影响。与单纯块石层保护方案相比,采用的块石+混凝土排垫方案具有更优良的防护效果。研究结果表明:在撞击点处,管道的轴向应变和环向应变均达到最大值,且随着与撞击点距离的增加沿管道轴向逐渐减小;撞击结束后,管道上仍然残留一定的塑性应变。随着管道壁厚的增加,管道的最大应变和凹陷深度也随之减小;随着内压的增加,管道上最大拉伸应变变大,而最大压缩应变和凹陷深度减小。随着落锚速度或者质量的增加,管道上最大应变和凹痕深度均变大;在相同动能情况下,管道上的最大应变和凹陷值基本相同,也表明落锚动能是影响管道变形响应的控制因素。本文研究成果可为海底管道防护方案设计提供科学依据。  相似文献   

19.
The hydrodynamic pressures induced by regular waves around the circumference of a pipeline normal to the wave direction and near a rigid bed of slope 1:10 have been investigated in a wave flume. The pressures were integrated to obtain the force time history, from which the peak horizontal and vertical forces are evaluated. The maximum and root mean square horizontal and transverse force coefficients are correlated with the Keulegan–Carpenter (KC) number. The effect of the distance between the sloping bed and the pipeline on the force coefficients is discussed. The force coefficients are found to decrease with an increase in KC number and with the decrease in the relative clearance of the pipeline from the boundary. In addition, the reflection characteristics of the sloping bed in the presence of the pipeline as a function of surf similarity parameter and their comparison with the results from existing literature are also reported. The details of the model setup, experimental procedure, results and discussion are presented in this paper.  相似文献   

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