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1.
针对我国波浪发电的发展现状,介绍了"海蛇"波浪发电装置的发电原理,并应用Orca Flex软件建立了装置的水动力数值模型,研究了"海蛇"装置浮筒的水动力特性。根据"海蛇"装置的结构特点,通过对活塞运动的时程曲线进行傅里叶变换,给出此装置一级转化总势能计算的简易方法。另外,通过改变浮筒的直径和长度,以装置的效率/体积比作为衡量系统经济性的指标,研究浮筒几何参数对装置一级能量转化效率的影响。结果表明,装置一级能量转化效率随浮筒长度和直径增加而变大,进一步分析表明,适当增加浮筒长度比增大直径更具经济效益。装置的效率/体积比随着浮筒直径增加存在先增加后减少的拐点,这可以为"海蛇"的初始设计提供一定的理论依据。  相似文献   

2.
田育丰  黄焱  史庆增 《海洋工程》2012,30(3):177-184
一级转换装置是一个波浪能发电装置中的关键技术,而如何提高能量转化效率,是一级转换过程研究的重点问题。为确定一级转换装置的能量转化效率与哪些因素有关,对摆式波浪能发电装置的摆板机构进行了模型试验研究,测试了摆板模型在多种波浪条件下的动力响应参数,确定了摆板的动力输出特性及其控制因素;测试了在极限波浪作用下,摆板模型装置的受力状况。通过试验,为摆式波浪能发电装置的设计提供了必要的参考依据。  相似文献   

3.
基于三维势流理论,建立筏式波浪发电装置多浮体水动力模型。利用AQWA水动力软件研究多浮体水动力相互作用对发电装置浮体单元水动力系数的影响;将能量转换系统等效成刚度-阻尼模型后,对其进行不规则波时域模拟,对比分析方向谱和频率谱波浪模型对波浪发电装置能量吸收的影响。结果表明:浮体之间的水动力相互作用对浮体单元纵荡方向上的附加质量与辐射阻尼系数有明显的影响,对垂荡和纵摇方向上的水动力系数影响较小;不同的波浪模型下,能量俘获功率有着较大的差别,特别是在迎浪状态下。  相似文献   

4.
针对双浮筒直驱式波浪发电系统的工作效率较低问题,提出了一种基于PID(Proportional Integral Derivative)控制的系统优化方法。首先根据波浪力学理论,计算出了双浮筒直驱式波浪发电系统的外浮筒(动浮筒)在自然条件下的运行特性,计算结果表明,受到波浪频率、垂直波浪速度和波浪周期固有特性的影响,外浮筒的垂直运动速度不能与波浪的垂直运动速度达到共振,进而也就导致波浪能转换成电能的工作效率较低。当采用基于PID控制算法对该波浪发电系统进行优化控制之后,波浪能转换成电能的效率有了很大的提高。详尽的算例分析和仿真结果表明本文提出的优化控制方法有效、可行。  相似文献   

5.
波浪能发电装置的波能转换通常分为两级能量转换:第一级能量转换是波浪作用下波浪能装置部件发生相对运动驱动PTO做功捕获波浪能;第二级能量转换为将捕获的波浪能转换为电能。其中一级波浪能转换系统的优化设计是提高波浪能装置能量转换效率的重要手段和关键技术。波浪作用下波浪能装置的运动与PTO做功运动相互耦合和影响,本文通过对不同波浪要素环境下、不同PTO阻尼下波浪能装置的频域运动模拟,以迎波宽度比为尺度对波浪能装置的一级能量转换系统进行优化设计,获得波浪能装置的最优做功阻尼,为实型装置负载加载设计提供设计依据,提高波浪能装置能量转化效率。鹰式一号波浪能装置的实海况运动证明,通过对一级能量转换系统的优化设计,能够有效提高装置的发电效率和提高装置对波浪响应频带宽度。  相似文献   

6.
目前全球对能源的需求急速增长,其中对可再生能源的需求也越来越大。中国将成为全球能源消费第一大国,研发高效的可再生能源装备已刻不容缓。我国有大量可开发的海洋波浪能,其中舟山附近海域的波浪能相当丰富。文中研发了适合舟山海域波浪条件的波浪能发电装置。具体研究内容包括以下几个方面:(1)从流体力学理论出发,采用斜坡将水平速度转化为垂向速度,设计了近岸固定式可适应潮位变化的波浪能发电装置。(2)进行了多种结构漂浮摆-斜坡组合的模型试验,找到了最佳结构方案,验证了漂浮摆原理的可行性。利用提升重物的方法获得了模型装置的一级波浪能捕获效率,成功通过液压装置将波浪能转化为电能。(3)建立了基于非稳态RANS的CFD仿真模型,分析漂浮摆式波浪能捕获模块的水动力性能。研究在不同载荷情况下漂浮摆装置的能量输出情况,得到了装置在特定工况下的漂浮摆受力情况,为能量转化系统设计和装置设计制造提供参考。  相似文献   

7.
提出了一种带纵摇前墙的新型振荡水柱式波浪能(OWC)装置,借助Open FOAM开源代码平台和waves2Foam工具包,数值模拟研究带纵摇前墙OWC装置的水动力性能和转换效率。主要研究前墙吃水d_1、前墙密度ρ、后墙吃水d_2、旋转约束力(用无量纲弹簧系数K表示)对该装置的反射系数C_r、透射系数C_t、耗散系数C_d和波能转换效率ξ的影响规律。结果表明,纵摇前墙能有效减少能量耗散,提高波能转换效率ξ;无量纲弹簧系数K对装置转换效率的影响主要集中在短波区域,且在K为0时装置具有最大的转换效率和最宽的高效频率带;前墙的密度和吃水深度对水动力系数影响不大;后墙的吃水深度对水动力系数影响较大,增加吃水深度能有效提高装置对于中短波和中长波段的波能转换效率,但对系统整体的能量耗散系数影响不大。  相似文献   

8.
应用三维势流理论及非线性时域耦合分析方法,在西非双方向涌浪和波浪条件下对深水浮筒及穿梭油轮水动力性能进行了数值计算,并与水池模型试验对比。对单浮筒在作业、生存海况下的运动响应进行了准确预报,同时对浮筒和穿梭油轮连接原油外输作业时的波频运动、平面运动给出了合理分析;得到原油外输装置在西非深水海域环境下的水动力响应特性,为我国参与西非深水海洋油气开采提供技术建议。  相似文献   

9.
能量代谢研究对水产配合饲料研制和评价的应用价值   总被引:8,自引:0,他引:8  
结合锯缘青蟹幼体能量代谢的研究成果,本文从能量转化效率、摄食代谢和特殊动力作用(SDA)、饲料的适宜能量浓度和能量蛋白比(C/P)及能量代谢的底物四个方面,阐述能量代谢的研究在水产配合饲料研制和评价方面的应用及其发展前景.  相似文献   

10.
一种自行研制的新型波浪发电装置—对向流、翼笼式、低参数透平[1]。该透平具有独特的壳体,能使叶轮在对向气流通过时作定向旋转,从而带动发电机发电。实验证明该机运转可靠、效率高,又具有结构简单、易于制造、寿命长、成本低等优点。用于海上浮标灯的波浪发电装置,与发电机匹配好,且容易起动。还阐述了波浪发电装置的效率分析与计算,以及活塞实验研究、水池模拟实验和海上实验结果。  相似文献   

11.
An expedient piezoelectric coupled buoy energy harvester from ocean waves is developed. The harvester is made of several piezoelectric coupled cantilevers attached to a floating buoy structure, which can be easily suspended in the intermediate and deep ocean for energy harvesting. In the buoy structure, a slender cylindrical floater is attached on a large sinker. The energy harvesting process is realized by converting the transverse ocean wave energy to the electrical energy via the piezoelectric patches mounted on the cantilevers fixed on the buoy. A smart design of the buoy structure is developed to increase the energy harvesting efficiency by investigation of the effects of the sizes of the floater and the sinker. A numerical model is presented to calculate the generated electric power from buoy energy harvester. The research findings show that up to 24 W electric power can be generated by the proposed expedient buoy harvester with the length of the piezoelectric cantilevers of 1 m and the length of the buoy of 20 m. The technique proposed in this research can provide an expedient, feasible and stable energy supply from the floating buoy structure.  相似文献   

12.
Investigation on the Oscillating Buoy Wave Power Device   总被引:4,自引:0,他引:4  
SU  Yongling 《中国海洋工程》2002,16(1):141-149
An oscillating buoy wave power device (OD) is a device extracting wave power by an oscillating buoy. Being excited by waves, the buoy heaves up and down to convert wave energy into electricity by means of a mechanical or hydraulic device. Compared with an Oscillating Water Column (OWC) wave power device, the OD has the same capture vvidth ratio as the OWC does, but much higher secondary conversion efficiency. Moreover, the chamber of the OWC, which is the most expensive and difficult part to be built, is not necessary for the OD, so it is easier to construct an OD. In this paper, a nu-merical calculation is conducted for an optimal design of the OD firstly, then a model of the device is built and, a model test is carried out in a wave tank. The results show that the total efficiency of the OD is much higher than that of the OWC and that the OD is a promising wave power device.  相似文献   

13.
A device for converting ocean wave energy into electricity utilizing a rocking buoy and a hydrogen pressure cell is described. The moored buoy contains a pneumatic tube filled with a dense liquid which rocks back and forth as a result of the ocean wave activity. Hydrogen gas, maintained above the dense fluid is alternatively compressed and expanded by the moving fluid. The hydrogen gas communicates with a hydrogen pressure cell and the resulting pressure difference across the cell leads to an electrical voltage and under load, to electrical power.  相似文献   

14.
The concept of using electrochemical gas concentration cells to convert the mechanical potential energy of ocean waves to electricity using a taut-moored buoy is analyzed. Several idealized embodiments are discussed and one of these is shown to have particular merit. Some results obtained in an experimental program aimed at developing such a system are described. In particular, an electrochemical cell employing the protonically conducting synthetic polymer Nafion, bounded by platinum electrodes, has been studied in a manner which simulates the operation of such a device within a taut-moored buoy subject to ocean waves. It is shown that with some modest engineering advances, this system is indeed capable converting a significant fraction of ocean wave energy into electricity.  相似文献   

15.
A heaving-buoy wave energy converter equipped with hydraulic power take-off is studied in this paper. This wave energy converter system is divided into five subsystems: a heaving buoy, hydraulic pump, pipelines, non-return check valves and a hydraulic motor combined with an electric generator. A dynamic model was developed by considering the interactions between the subsystems in a state space form. The transient pressures caused by starting/stopping the buoy or closing/opening the check valves were predicted numerically using the established model. The simulation results show that transmission line dynamics play a dominant role in the studied wave energy converter system. The length of the pipeline will not only affect the amplitude of the transient pressures but also affect the converted power. The variation of the time-averaged converted electric power with the pipeline length is estimated using the simulation method for the buoy exposed to one irregular sea state. Finally, it is suggested how reduced power efficiency due to the pipelines may be ameliorated.  相似文献   

16.
A direct-drive wave energy conversion system based on a three-phase permanent magnet tubular linear generator (PMTLG) and a heaving buoy is proposed to convert wave energy into electrical energy. Sufficient experimental methods are adopted to compare the computer simulations, the validity of which is verified by the experiment results from a wave tank laboratory. In the experiment, the motion curves of heaving buoy are with small fluctuations, mainly caused by the PMTLG's detent force. For the reduction of these small fluctuations and a maximum operational efficiency of the direct-drive wave energy conversion system, the PMTLG's detent force minimization technique and the heaving buoy optimization will be discussed. It is discovered that the operational efficiency of the direct-drive wave energy conversion system increases dramatically after optimization. The experiment and optimization results will provide useful reference for the future research on ocean wave energy conversion system.  相似文献   

17.
Point absorber wave energy device with multiple degrees of freedom (DOF) is assumed to have a better absorption ability of mechanical energy from ocean waves. In this paper, a coaxial symmetric articulated point absorber wave energy converter with two degrees of freedom is presented. The mechanical equations of the oscillation buoy with power take-off mechanism (PTO) in regular waves are established. The three-dimensional numerical wave tank is built in consideration of the buoy motion based upon the CFD method. The appropriate simulation elements are selected for the buoy and wave parameters. The feasibility of the CFD method is verified through the contrast between the numerical simulation results of typical wave conditions and test results. In such case, the buoy with single DOF of heave, pitch and their coupling motion considering free (no PTO damping) and damped oscillations in regular waves are simulated by using the verified CFD method respectively. The hydrodynamic and wave energy conversion characteristics with typical wave conditions are analyzed. The numerical results show that the heave and pitch can affect each other in the buoy coupling motion, hydrodynamic loads, wave energy absorption and flow field. The total capture width ratio with two coupled DOF motion is higher than that with a single DOF motion. The wave energy conversion of a certain DOF motion may be higher than that of the single certain DOF motion even though the wave is at the resonance period. When the wave periods are high enough, the interaction between the coupled DOF motions can be neglected.  相似文献   

18.
针对阵列式振荡浮子波浪能转换设备,提出一种在实验室进行测试研究的实验装置。该实验装置由一组阵列柱形水槽组成,水槽液面在水动力系统的驱动下,按照计算机设定的函数做升降运动;对该装置模型——柱形阵列水槽的假设,依据波浪理论进行了论证;对装置的工作原理、结构设计、技术参数、控制电路和操作运行等做了较详细的说明;对实验装置实际运行和测试情况做了介绍。结果表明:该实验装置设计合理可行,模拟波浪高度,远高于现有的造波水池,构成了一种专用的模拟造波装置;该装置为不同形式振荡浮子式波浪能转换设备的研制提供了一种多功能、大振幅、高效灵活的实验平台。  相似文献   

19.
Described herein is a self-contained, discus-hulled buoy 1.5 m dia., weighing 150 kg, which uses inertial instruments to measure wave height and tilt. Wave tank calibration and the theory of shallow draft buoys demonstrate such a hull accurately follows waves with length greater than twice the buoy diameter. The non-linear response of the buoy determines its sensitivity to low-frequency waves in a sea. And the ratio of wave signal to instrument “noise” is constant over the energetic part of the ocean-wave spectrum for measurements of wave acceleration and slope.  相似文献   

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