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1.
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   

2.
点吸收式波能转换装置是具有较好应用前景的一种波浪能开发利用装置,其参数设计直接影响到波浪能开发利用的可行性与有效性。作者针对青岛斋堂岛目标海域海况,通过数值模拟首先应用单因素敏感性分析法分析了双浮子点吸收式波能转换装置的结构尺寸、锚固形式、波流夹角、PTO阻尼、PTO刚度等参数对装置俘能功率的独立影响规律。之后考虑多参数的综合影响,通过运用稳健设计方法,以上述参数为控制因子并确定合理的变动水准,将俘能功率作为评价标准,选取合理的正交实验L矩阵,得到了不同参数组合情况下的装置俘能功率并进行统计分析。结果表明,浮子尺寸、PTO阻尼、波流夹角对装置俘能功率影响较大,而PTO刚度、锚链与铅垂线夹角、锚链与波浪在水平面内的夹角对俘能功率影响不明显。提出的参数研究方法可为其他海域点吸收式波能转换装置参数设计提供参考。  相似文献   

3.
文中针对波浪能发电装置液压系统测试需要,介绍了液压系统测试平台的研制工作。该平台采用由电液伺服阀和比例压力阀组成的液压系统模拟波浪能发电装置在波浪作用下往复运动,实现测试液压系统工作性能。建立系统传递函数,分析了系统稳定性;通过计算仿真分析,其结果表明所设计的波浪能发电装置液压检测平台能够满足模拟波浪输入条件的要求。  相似文献   

4.
设计了一种浮力摆式波浪能发电装置,并根据其原理在实验室中开展比例模型试验。介绍了该装置的设计原理、试验原理,试验设计以及数据处理与结果分析,并在实验室模拟波况下,绘制出了波浪能装置的转换效率曲线。试验显示,该波浪能发电装置具有性能稳定,能量转换效率较高,能适应小波浪发电等特点。  相似文献   

5.
为了寻求低成本、结构简单、无污染、输出电压高的波浪能发电系统,本文提出了一种新型点吸收式波浪能摩擦纳米发电系统,该系统包括振荡浮子、具有纳米摩擦层的连杆套筒和固定在海底的支架。首先利用AQWA软件对该装置进行水动力仿真得出在波浪周期为5 s,不同波浪高度时浮子对应的振荡位移情况,然后进一步建立数学仿真模型,分析了垂直滑动摩擦纳米发电机的开路电压、转移电荷量、电流以及电容随位移和时间的关系,得到了外接不同负载时发电机的最大功率和最大功率对应的电压电流情况。通过数据分析发现:随着波浪高度和纳米摩擦层绝对摩擦位移的增加,电能输出稳定后的最优匹配电阻在109Ω左右,此时摩擦纳米发电机的发电性能最佳,对应波浪高度为0.5 m时最大发电功率为173.6 W。  相似文献   

6.
通过分析波浪能利用背景,提出点吸收式波浪能发电技术是波浪能开发利用的一种重要方式。以安装位置、能量传递方式和振荡浮子个数对点吸收式波浪能发电装置进行了分类。结合研究现状,对各类点吸收波浪能收集、转化和传递方法及其应用的优缺点进行了综合比较和分析。结果表明:安装于离岸10~25 m处,以多个振荡浮子组成的浮子阵列为能量摄取机构,以液压或直线电机为能量传递方式是目前点吸收波浪能发电技术的研究热点,在波浪能利用领域具有广阔的发展前景。  相似文献   

7.
根据布设海域波浪能资源特征,对点吸收式波浪能装置结构进行优化,可有效提高装置的能量俘获效率。本文以威海褚岛北部海域为装置布设目标海域,在对该海域波浪资源特征进行统计分析的基础上,计算得到装置的直径,同时利用数值软件计算出多组工况下点吸收装置吃水深度和装置固有周期的对应关系,并利用统计学方法得出装置固有周期随吃水深度的变化规律,进而分析得出装置在该海域的最佳设计吃水深度,为点吸收波浪能装置结构优化设计提供了新的思路。该方法对于其他技术类型波浪能装置的结构优化设计同样具有借鉴意义。  相似文献   

8.
利用海洋波浪能发电已成为当今国内外专家研究的一个热点问题,其开发利用技术日趋成熟,并已取得一定的研究成果。在点吸收式波浪能转化研究的基础上,提出并设计了一种多点半直驱式波浪能发电系统,介绍了该波浪能发电系统的组成和基本原理,并以此搭建了实验室模型样机,为更好地反应模型样机的实时状态监控,选择相应的软硬件设施为样机配置监控系统,利用组态王软件编写了该系统的监控程序。为检验系统的发电效率和运行情况,以已经开发完成的仿真实验模型样机和监控系统为基础设计了3种实验方案,对实验数据进行了详细分析,通过实验验证了多点半直驱式波浪能发电系统的可行性,且能有效提高海洋能的收集利用效率,为系统的优化设计和实海况试验提供了理论依据与实验数据参考。  相似文献   

9.
波浪能作为一种蕴藏丰富、可再生的清洁能源,在世界上受到了广泛关注。文中提出了一种浮力摆式波浪能发电装置,简要介绍了该装置的工作原理以及基本组成,并对其关键技术进行了研究;建立了装置动力响应特性模型,结合站址海域波浪环境条件对装置进行了水动力特性分析,获取装置对波浪的响应状况,确定了关键设计参数;利用该参数对装置进行了结构设计,并对其关键受力部位进行强度计算与优化。结果表明,装置在规则波条件下具有较高的能量转换效率,同时满足其在极限波况下的强度要求。  相似文献   

10.
对实际工程中的浮力摆式波浪能发电装置进行水动力学研究和优化设计,得到提升波浪能发电能力的方法。首先建立波浪能水动力性能的评估体系,其核心是估算浮力摆波浪能发电装置俘获效率,其中波浪输运能量根据实际海况条件,利用随机波浪理论进行估算,浮力摆俘获能量估算则根据水动力学模型时域计算结果;然后依据建立的水动力性能评估体系,以浮力摆摆板宽度和后端负载为变量进行优化设计,总结了提高波浪能俘获能力的方法,即增大浮力摆宽度,并相应提高匹配负载;最后分析了两套浮力摆的交互作用,计算结果表明,如果将两套设备俘获能量通入同一组蓄能装置中,输入能量更加平稳,即利用浮力摆俘获波浪能的相位差,可以显著提升波浪能发电装置的发电能力。  相似文献   

11.
为解决海洋监测微型传感器供能问题,设计新型波浪能捕获装置,在海面振荡浮筒气室产生空气气柱,驱动介电弹性体形变发电为传感器供能。建立振荡浮子式气柱数值模型,研究新型振荡水柱发电计算理论。利用水动力仿真软件AQWA求解浮子所受波浪力作用振荡幅值、辐射阻尼和附加质量。基于Simulink软件分别计算波浪作用下浮子位移和气室内水柱位移,根据两者的位移差计算气室体积变化所产生的空气压强、介电弹性体发电薄膜形变量和系统输出电能,单次循环周期最大发电量达到24.6 mJ。分析波浪周期、发电薄膜几何参数等对输出电能的影响。  相似文献   

12.
Ye  Yin  Wang  Kun-lin  You  Ya-ge  Sheng  Song-wei 《中国海洋工程》2019,33(5):618-627
The "Sharp Eagle" device is a wave energy converter of a hinged double floating body. The wave-absorbing floating body hinges on the semi-submerged floating body structure. Under the action of wave, the wave-absorbing floating body rotates around the hinge point, and the wave energy can be converted into kinetic energy. In this paper, the power take-off system of "Sharp Eagle II" wave energy converter(the second generation of "Sharp Eagle") was studied, which adopts the hydraulic type power take-off system. The 0-1 power generation mode was applied in this system to make the "Sharp Eagle II" operate under various wave conditions. The principle of power generation was introduced in detail, and the power take-off system was simulated. Three groups of different movement period inputs were used to simulate three kinds of wave conditions, and the simulation results were obtained under three different working conditions. In addition, the prototype of "Sharp Eagle II" wave energy converter was tested on land and in real sea conditions. The experimental data have been collected, and the experimental data and simulation results were compared and validated. This work has laid a foundation for the design and application of the following "Sharp Eagle" series of devices.  相似文献   

13.
The double-body heave wave energy converter(WEC) is one of the most conducive devices to absorb the wave energy from relative motion while the law of which is not well understood. This paper makes an in-depth study on this wave energy converter, by means of the combination of theoretical analysis and physical model experiment. The hydrodynamic characteristics and energy capture of the double-buoy under constant and linear Power Take-Off(PTO) damping are investigated. Influences of absolute mass and mass ratio are discussed in the theoretical model.Relative displacement amplitude and average power output are tested in the experiment to analyze the effect of the wave period and outer buoy's mass, while the capture width ratio(CWR) is also calculated. Results show that the wave period and mass of the buoys have a significant effect on the converter. Different forms of PTO damping have no influence on the optimal wave period and mass ratio of this device. It is recommended to select the double-buoy converter with a mass ratio of 0.80 and to place it in an area with the frequent wave period close to the natural period of the outer buoy to achieve the optimal energy capture.  相似文献   

14.
波浪能是一种清洁、可再生的新型能源,波浪能发电装置在海上作业时会受到变化的风、浪、流载荷作用,需要系泊系统保证其稳性和安全性。以适用于中国南海500 m水深的振荡双浮体式波浪能发电装置为研究对象,运用频域计算与时域计算结合的方法对双浮体及其系泊系统的运动响应和动力载荷进行计算,获取极端海况与工作海况下浮体运动和系泊缆索张力的时历数据。参照BV船级社NR-493规定的海上浮式结构物系泊安全系数规范,对3种系泊方案进行安全校核和对比分析。选定其中一种系泊方案,通过改变系泊系统以及能量转换器(PTO)的参数,探究参数变化对双体波浪能装置运动响应以及系泊系统特性的影响,为类似应用于深水的双体波浪能装置系泊系统的设计提供参考。  相似文献   

15.
Raft-type wave energy converter (WEC) is a multi-mode wave energy conversion device, using the relative pitch motion to drive its hydraulic power take-off (PTO) units for capturing energy from the ocean waves. The hydraulic PTO unit as its energy conversion module plays a significant role in storing large qualities of energy and making the output power smooth. However, most of the previous investigations on the raft-type WECs treat the hydraulic PTO unit as a linear PTO unit and do not consider the dynamics of the hydraulic circuit and components in their investigations. This paper is related to a two-raft-type WEC consisting of two hinged rafts and a hydraulic PTO unit. The aim of this paper is to make an understanding of the dynamics of the hydraulic PTO unit and how these affect the performance of the two-raft-type WEC. Therefore, a combined hydrodynamic and hydraulic PTO unit model is proposed to investigate and optimize the performance of the two-raft-type WEC; and based on the simulation of the combined model, the relationships between the optimal power capture ability, the optimal magnitude of the hydraulic PTO force and the wave states are numerically revealed. Results show that an approximately square wave type hydraulic PTO force is produced by the hydraulic PTO unit, which causes the performance of the two-raft-type WEC not to be sinusoidal and the energy capturing manner different from that of the device using a linear PTO unit; moreover, there is an optimal magnitude of the hydraulic PTO force for obtaining an optimal power capture ability, which can be achieved by adjusting the parameters of the hydraulic PTO unit; in regular waves, the optimal power capture ability as well as the optimal magnitude of the hydraulic PTO force normalized by the wave height presents little relationship with the wave height, mainly depends on the wave period; in irregular waves, the trends of the optimal power capture ability and the normalized optimal magnitude of the hydraulic PTO force against the peak wave periods at different significant wave heights are generally identical and show a good correlation. All means that the hydraulic PTO unit of the two-raft-type WEC can be tuned to the wave states, and these would provide a valuable guidance for the optimal design of its hydraulic PTO unit.  相似文献   

16.
In the present study, the performance characteristics of a Savonius rotor type wave energy converter used in conjunction with a conventional double-buoy floating breakwater is investigated using physical model studies. The Savonius rotor type converter is suspended under the double-buoy floating breakwater to achieve wave attenuation while generating electricity, thereby enhancing the overall wave-elimination effect of the combination. The Savonius rotor is tested with different water submergence depths, and a reasonable relative submergence depth is determined within the scope of the research parameters. The hydrodynamics and energy capture performance of the combined breakwater with four different sizes of Savonius rotor under different wave conditions are studied, and the transmission coefficient of the experimental device is analyzed. The results show that when the optimal relative submergence depth is 0.65 D, where D is the impeller diameter, there is a correspondence between the optimal performance of Savonius rotor with different rotor sizes and the wave period and wave height. The optimal energy capture efficiency of the wave energy converter reaches 17%-20.5%, and the transmission coefficient is reduced by35%-45% compared with the conventional double-buoy breakwater.  相似文献   

17.
18.
随着潮流能开发利用技术日趋成熟,对其测试工作也提出了更高的要求。然而,在潮流能装置性能测试中,波流相互作用的影响往往被忽略,导致测试结果不准确。为了研究波流相互作用对测试的影响方式与程度,采用物理模型试验的方法,对垂直轴潮流能发电装置模型进行了试验研究。通过分析波流作用下装置的扭矩、转速及发电功率,发现波流与发电装置耦合作用明显,相比不存在波浪影响的情况下,叶轮的转动、主轴的扭矩都变得不规则,启动流速变小,同时,扭矩、转速及发电功率的瞬时值显著增大。测试结果表明,波流相互作用对装置性能测试影响显著,平均影响程度约10%,研究结果为今后潮流能发电装置性能测试标准的制定和完善提供了参考和依据。  相似文献   

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