共查询到20条相似文献,搜索用时 31 毫秒
1.
对大型浮式平台与供应船之间的旁靠带缆系统进行选型设计,同时开展两船旁靠作业时耦合响应特性的水池试验研究。重点分析两船体六自由度的相对运动特点、旁靠系泊缆的受力以及护舷的挤压应力随风浪流角度的变化规律。试验表明:两船在纵荡、横荡及首摇这三个低频方向的相对运动幅度较小,一般不会成为制约旁靠卸载作业的控制因素,但另外三个波频方向运动具有一定的独立性,且不受旁靠缆绳的约束,是影响旁靠作业窗口期的重要因素;缆绳张力和护舷挤压力对来流角度较为敏感,且供应船处于上风位时,缆绳的张力、护舷的挤压力比其位于下风位有明显增大,建议供应船尽可能位于浮式平台的下风位旁靠作业。 相似文献
2.
近年来海上浮式风机的研究备受关注,安全可靠的系泊系统将保证风机在风、浪、流等复杂环境荷载作用下稳定运行,准确合理地描述风机运动将为评估风机发电效率提供支持。以半潜型浮式风机的系泊系统为研究对象,基于经典悬链线理论,采用准静态分析法提出一套系泊系统的设计方法。通过坐标变换,得到风轮真实的俯仰运动用于计算风机的动力效应及评定其发电效率。采用动力法分析了系泊系统锚链的导缆孔位置、预张力大小、锚链间夹角等参数对风机系统发电效率、浮式平台运动性能和系泊锚链张力的影响,得到了浮式平台迎风面俯仰倾角、水平偏移及锚链张力随参数的变化规律,为半潜型浮式风机系泊系统的设计提供了参考。 相似文献
3.
浮式海上风力机运动性能和锚泊系统(英文) 总被引:2,自引:0,他引:2
The development of offshore wind farms was originally carried out in shallow water areas with fixed(seabed mounted) structures.However,countries with limited shallow water areas require innovative floating platforms to deploy wind turbines offshore in order to harness wind energy to generate electricity in deep seas.The performances of motion and mooring system dynamics are vital to designing a cost effective and durable floating platform.This paper describes a numerical model to simulate dynamic behavior of a new semi-submersible type floating offshore wind turbine(FOWT) system.The wind turbine was modeled as a wind block with a certain thrust coefficient,and the hydrodynamics and mooring system dynamics of the platform were calculated by SESAM software.The effect of change in environmental conditions on the dynamic response of the system under wave and wind loading was examined.The results indicate that the semi-submersible concept has excellent performance and SESAM could be an effective tool for floating wind turbine design and analysis. 相似文献
4.
The exploration for renewable and clean energies has become crucial due to environmental issues such as global warming and the energy crisis. In recent years,floating offshore wind turbines(FOWTs) have attracted a considerable amount of attention as a means to exploit steady and strong wind sources available in deep-sea areas. In this study, the coupled aero-hydrodynamic characteristics of a spar-type 5-MW wind turbine are analyzed. An unsteady actuator line model(UALM) coupled with a twophase computational fluid dynamics solver naoe-FOAM-SJTU is applied to solve three-dimensional Reynolds-averaged NavierStokes equations. Simulations with different complexities are performed. First, the wind turbine is parked. Second, the impact of the wind turbine is simplified into equivalent forces and moments. Third, fully coupled dynamic analysis with wind and wave excitation is conducted by utilizing the UALM. From the simulation, aerodynamic forces, including the unsteady aerodynamic power and thrust, can be obtained, and hydrodynamic responses such as the six-degrees-of-freedom motions of the floating platform and the mooring tensions are also available. The coupled responses of the FOWT for cases of different complexities are analyzed based on the simulation results. Findings indicate that the coupling effects between the aerodynamics of the wind turbine and the hydrodynamics of the floating platform are obvious. The aerodynamic loads have a significant effect on the dynamic responses of the floating platform, and the aerodynamic performance of the wind turbine has highly unsteady characteristics due to the motions of the floating platform. A spar-type FOWT consisting of NREL-5-MW baseline wind turbine and OC3-Hywind platform system is investigated. The aerodynamic forces can be obtained by the UALM. The 6 DoF motions and mooring tensions are predicted by the naoe-FOAM-SJTU. To research the coupling effects between the aerodynamics of the wind turbine and the hydrodynamics of the floating platform, simulations with different complexities are performed. Fully coupled aero-hydrodynamic characteristics of FOWTs, including aerodynamic loads, wake vortex, motion responses, and mooring tensions, are compared and analyzed. 相似文献
5.
The complexity of the dynamic response of offshore marine structures requires advanced simulations tools for the accurate assessment of the seakeeping behaviour of these devices. The aim of this work is to present a new time-domain model for solving the dynamics of moored floating marine devices, specifically offshore wind turbines, subjected to non-linear environmental loads. The paper first introduces the formulation of the second-order wave radiation-diffraction solver, designed for calculating the wave-floater interaction. Then, the solver of the mooring dynamics, based on a non-linear Finite Element Method (FEM) approach, is presented. Next, the procedure developed for coupling the floater dynamics model with the mooring model is described. Some validation examples of the developed models, and comparisons among different mooring approaches, are presented. Finally, a study of the OC3 floating wind turbine concept is performed to analyze the influence of the mooring model in the dynamics of the platform and the tension in the mooring lines. The work comes to the conclusion that the coupling of a dynamic mooring model along with a second-order wave radiation-diffraction solver can offer realistic predictions of the floating wind turbine performance. 相似文献
6.
7.
8.
作为一种综合性浮式平台,浮式钻井生产储油船简称FDPSO,具备石油钻探、生产、储备等功能,是在浮式生产储油船的基础上发展而来.FDPSO主要工作于海况比较恶劣的深水海域,因而如何准确预报FDPSO的运动响应和锚链的预张力非常必要.本文基于时域耦合方法对FDPSO运动响应和锚链的预张力进行预报,在此基础上将数值结果与试验结果进行对比以验证理论计算的可靠性.通过改变锚链线的预张力来研究预张力对FDPSO运动响应的影响.文中提供了运动响应的时历曲线和响应谱,并对比分析其中的异同,结果表明锚链预张力对纵荡、横荡和横摇运动的响应影响比较大. 相似文献
9.
10.
11.
半潜平台在恶劣的海洋环境中将承受极端的环境载荷,从而导致相应的大幅运动,截面载荷以及系泊力。文章对一艘系泊在南海的典型半潜平台进行了综合试验研究。为了测量中纵剖面上的波浪载荷,半潜平台模型从中纵剖面处被剖开,并用3个六分力传感器进行连接。结果表明,当波浪周期在10 s附近时,中纵剖面处的截面传递函数达到最大值。而低频长波以及差频波浪成分对剖面载荷影响很小。文中还分别针对仅有波浪作用的海况和风、浪、流联合作用的海况,对半潜平台的运动和载荷情况进行了研究,发现风和流对平台波频运动影响较小,而对于低频运动,其影响要大于波浪作用。随着风和流的出现,中纵剖面的剪切力,分离力以及垂向弯矩增幅分别可达127.07%,51.87%和45.77%。与此同时,在风、浪、流的联合作用下,最大锚链力与锚链的破断强度比值达到了62.3%,接近规范中66.6%的限制。 相似文献
12.
13.
14.
15.
16.
An innovative offshore system integrating a floating offshore wind turbine with a steel fish farming cage (FOWT-SFFC) has recently been developed by the two leading authors for offshore wind and aquaculture industry. The purpose of this paper is to investigate the dynamic responses of FOWT-SFFC subjected to simultaneous wind and wave actions in the harsh South China Sea environment by a series of model tests. The tests are conducted at the Tsinghua Ocean Engineering Basin with Froude scale of 1:30. In this paper, the similarity law and setup of model tests are given first. Then a series of calibration tests and identification tests are carried out to validate the capacity of wind generator and wave maker, and to identify the vibration frequencies of tower, the stiffness of mooring system, natural periods and system damping, motion response amplitude operators (RAOs) of FOWT-SFFC, and thrust-speed performance of the turbine in wave basin. After that, seakeeping tests are implemented for random waves, followed by a sequence of load cases including normal operating and extreme conditions. Constant wind speeds and random wind speeds are respectively considered in load combinations. The experimental results affirm the excellent seakeeping and dynamic performance of FOWT-SFFC. Existence of metal fish nets increases the damping of foundation's 6 degree-of-freedoms motions. Generally, the influence of nets on the dynamic responses is insignificant in wind sea states. 相似文献
17.
悬链式系泊缆现被广泛使用于海洋平台的定位中,掌握其力学特性对确保海洋平台的安全有非常重要的意义。使用二维集中质量法建立了单根悬链式系泊缆的力学模型,运动方程通过C#编程语言实现计算并通过算例验证了正确性, 系泊缆动力特性的计算程序采取了动态循环数组存储的方法,节省了存储空间。研究了系缆上端点激励为x轴方向简谐运动时节点19、17、15、13、11和9的运动轨迹以及张力最大值最小值的变化趋势,最后在频域对各节点功率谱进行了分析,并得出一些有意义的结论,为海洋平台的发展以及主动式混合模型试验提供了一定的参考价值。 相似文献
18.
系泊系统非线性恢复力研究及其应用(英文) 总被引:2,自引:1,他引:1
Mooring system plays an important role in station keeping of floating offshore structures.Coupled analysis on mooring-buoy interactions has been increasingly studied in recent years.At present,chains and wire ropes are widely used in offshore engineering practice.On the basis of mooring line statics,an explicit formulation of single mooring chain/wire rope stiffness coefficients and mooring stiffness matrix of the mooring system were derived in this article,taking into account the horizontal restoring force,vertical restoring force and their coupling terms.The nonlinearity of mooring stiffness was analyzed,and the influences of various parameters,such as material,displacement,pre-tension and water depth,were investigated.Finally some application cases of the mooring stiffness in hydrodynamic calculation were presented.Data shows that this kind of stiffness can reckon in linear and nonlinear forces of mooring system.Also,the stiffness can be used in hydrodynamic analysis to get the eigenfrequency of slow drift motions. 相似文献
19.
环境荷载对系泊系统受力和运动响应起着关键的影响作用,有必要对影响系泊系统的关键环境参数进行深入研究,揭示环境参数对系泊系统的作用和影响机理。基于势流理论,结合大型水动力学软件AQWA,以一种简单的矩形浮箱式结构物为典型示例,根据浮箱基本参数及相关技术要求,考虑张紧式和悬链式两种不同的系泊方式,建立系泊系统动力分析计算模型。结果表明:在讨论范围内,系泊力随着流速、流向、风速等环境参数的增加而增加;对于横荡和横摇,随着流速、风速等环境参数的增加,横荡和横摇曲线呈现增加的趋势;相对而言,张紧式系泊可以更好地保持系泊系统稳定。 相似文献