共查询到18条相似文献,搜索用时 218 毫秒
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为完善我国海洋能发电装置室内试验的量值溯源和量值传递,提高实验室测量数据的科学性和严谨性,保障海试工作的顺利开展,文章根据相关国际指南和标准,以潮流能发电装置模型能量俘获效率的室内试验为例,研究测量不确定度的评定方法。研究结果表明:根据潮流能发电装置模型能量俘获效率的计算公式,其测量不确定度评定的分量包括叶轮半径、水流速、水密度以及扭矩仪扭矩和转速;分别计算各分量的标准不确定度并进行合成,最终得出俘获效率的分散区间;该方法可为海试阶段样机的测量不确定度评定奠定基础。 相似文献
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为了促进深远海养殖装备朝智能化方向发展,解决电能供给困难的问题,克服抗风浪网箱受波流耦合作用对太阳能和风能利用的局限性的问题,针对养殖区域的低流速海域,提出了一种适用于深远海可升降网箱的横轴半潜式潮流能发电装置,建立了Savonius型水轮机叶片受力数学模型,分析了叶轮中心与水面的距离对水轮机捕能效率的影响,利用Fluent软件数值模拟了导流增速浮体的速度场情况,设计了发电装置整体结构及锚泊系统,搭建了发电装置试验模型,开展了物理模型试验,测试了不同水流速度情况下与叶轮相对离水距有关的各参数变化情况,并对试验数据进行分析。试验结果表明,在不同的水流流速下,随着离水距的不断增加,捕获功率呈先增加后减小的趋势,当叶轮中心高出水面1/4个叶轮直径时,叶轮的输出功率最大。 相似文献
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一种新型鲸鱼式潮流能发电装置的设计与试验研究 总被引:1,自引:0,他引:1
为了进一步提高潮流能的利用率,提出了一种新型鲸鱼式潮流能发电装置。借鉴风机叶片设计方法及水平轴水轮机的设计原理,利用结构力学、流体力学和CFD相关方法,对该装置的螺旋桨叶、导流筒和固定桩等部件进行了设计研究,从获能效果、装置可靠性和发电功率等方面进行了优化设计,并通过900 W样机试验验证了设计的有效性。试验结果显示,海流高潮期装置最大发电功率可达到980 W,一天内大约有4个缓潮期,此间发电功率明显下降,但持续时间不长,总体平均发电功率在800 W上下;同时潮流能轮机启动流速在0.41 m/s左右,有着良好的低速启动性能。 相似文献
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随着国际社会对海洋可再生能源开发利用的关注,众多海洋能发电装置投入研发。目前我国已有相当一部分海洋能发电装置进入海试阶段。因此,在海洋能发电装置海试的过程中,需要对海洋能发电装置的发电性能进行检测。文中介绍了海洋能发电装置现场检测平台的设计,研究并设计检测方法以满足海洋能发电装置现场检测的需求。海洋能发电装置现场检测平台的设计以满足波浪能、潮流能发电装置的测试需求为主,兼顾其他形式的发电装置。该平台主要对海洋能发电装置的功率特性、电能质量特性以及电网适应性等指标进行测试,并根据海洋能发电装置的测试结果开展分析与评价。 相似文献
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潮流能发电水轮机的实际工作海域往往存在不同程度的湍流,而湍流会对潮流能发电水轮机的获能系数、轴向力系数和尾流场性能等产生影响。研究湍流对潮流能发电水轮机性能的影响规律,对于实海况下潮流能发电水轮机的性能预测、可靠性和安全性的提高以及潮流能发电场多机组排布优化等具有一定的参考价值。通过对潮流能发电水轮机试验模型进行建模,并用CFD(Computational Fluid Dynamics)分析软件Fluent对处于不同湍流强度下的潮流能发电水轮机性能进行数值模拟,得到其获能系数、轴向力系数及尾流场特性。通过分析数值模拟结果,并与相关参考文献的试验结果进行对比。研究结果表明:湍流强度越大,水轮机获能系数和轴向力系数越小,尾流场速度恢复越快;水轮机后方尾流场纵向和横向影响区域更大。 相似文献
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基于上海海洋大学研制的卧式海流能发电装置,在对叶片受力进行分析的基础上,采用雷诺平均N-S方程和滑移网格技术,对不同工况下的叶轮运动进行了数值模拟,获得了力矩系数、能量转换效率及功率等性能参数。通过分析比较不同工况下的各性能参数的变化规律,发现叶轮运动具有周期性,一个周期内的相邻极大、极小值之间相差72°相位角;随着海流速度和叶轮转速的增大,输出功率逐渐增大;而力矩系数和能量利用效率却呈现先增大后减小的趋势,在海流速度v=1.5 m/s,尖速比λ=2.46时,能量转换效率最大,可达到34.6%,输出功率为373 W,并与海试结果进行了对比分析。 相似文献
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We recently showed the advantage of using a numerical system to extract energy from tidal currents by developing a new twin-turbine model (Li and Calisal, 2010a). Encouraged by this result, we decided to use this model to study another important characteristic of the turbine system, torque fluctuation. This effort is summarized in this paper. The torque fluctuation is expected to reduce the fatigue life of tidal current turbines, though potentially it also may deteriorate the power quality of tidal current turbines. In this paper, after reviewing the twin-turbine model, we use it to predict the torque fluctuation of the system with the same configurations as we used to study the power output in Li and Calisal (2010a). Specifically, we investigate the torque fluctuation of twin-turbine systems with various turbine parameters (e.g., relative distance between two turbines and incoming flow angle) and operational condition (e.g., tip speed ratio). The results suggest that the torque of an optimally configured twin-turbine system fluctuates much less than that of the corresponding stand-alone turbine, under the same operating conditions. We then extensively compare the hydrodynamic interaction’s impact on the torque fluctuation and the power output of the system. We conclude that the hydrodynamic interactions pose more constructive impacts on the torque fluctuation than on the power output. The findings indicate that the optimally configured counter-rotating system should be a side-by-side system, and that the optimally configured co-rotating system should have the downstream turbine partially in the wake of the upstream turbine depending on the detailed configuration of the turbines. Furthermore, one must balance the optimal torque fluctuation against the optimal power output. 相似文献
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Research on the unsteady hydrodynamic characteristics of vertical axis tidal turbine 总被引:1,自引:0,他引:1
The unsteady hydrodynamic characteristics of vertical axis tidal turbine are investigated by numerical simulation based on viscous CFD method. The starting mechanism of the turbine is revealed through analyzing the interaction of its motion and dynamics during starting process. The operating hydrodynamic characteristics of the turbine in wave-current condition are also explored by combining with the linear wave theory. According to possible magnification of the cyclic loads in the maximum power tracking control of vertical axis turbine, a novel torque control strategy is put forward, which can improve the structural characteristics significantly without effecting energy efficiency. 相似文献
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《中国海洋工程》2020,(3)
The research on the hydrodynamics of blades is mainly focused on sea areas with high-speed current. However, the average velocity in most territorial waters of China is smaller than 1 m/s, and the lift type of airfoil blades has limited application in most of these conditions. Therefore, it is of great significance to study the tidal current energy capture of blades in sub-low speed sea areas. The effect of flow impact resistance on the blade at sub-low current speed is considered and a new type of thin-walled blade based on the lift type of blade is proposed, and then the lift-impact combined hydrodynamic model of horizontal axis blade is established. Based on this model, and considering the characteristics of tidal current and velocity in the sea area of Yushan Islands, simulation and optimization of blade design are carried out. Additionally, the horizontal axis thin-walled blade and the NACA airfoil contrast blade under the same conditions are developed. By using a synthetical experimental test system, the power, torque, rotational speed and load characteristics of these two blades are tested. The performance of the thin-walled blade and the design theory are verified. It shows that this type of blade has much better energy capture efficiency in the sub-low speed sea area. This research will promote the study and development of turbines that can be used in low-speed current sea areas in the future. 相似文献
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Based on blade element momentum theory and generator characteristic test, a dynamic simulation model of 150 kW horizontal-axis tidal current turbine was established. The matching of the dynamic characteristics between the turbine and generator under various current velocities is studied, and the influence of the pitch angle on the matching is analyzed. For the problem of maximum power output in case of low current speed and limiting power in high current speed, the relation between optimal pitch angle and output power is analyzed. On the basis of dynamic characteristic analysis, the variable pitch control strategy is developed. The performance of the turbine under various tidal conditions is simulated. The research results show that the designed controller enables the turbine to operate efficiently under the condition of low current speed, and achieve the goal of limited power at high current speed. 相似文献
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To study the characteristics of attenuation, hydrostatic towage and wave response of the vertical-axis floating tidal current energy power generation device (VAFTCEPGD), a prototype is designed and experiment is carried out in the towing tank. Free decay is conducted to obtain attenuation characteristics of the VAFTCEPGD, and characteristics of mooring forces and motion response, floating condition, especially the lateral displacement of the VAFTCEPGD are obtained from the towing in still water. Tension response of the #1 mooring line and vibration characteristics of the VAFTCEPGD in regular waves as well as in level 4 irregular wave sea state with the current velocity of 0.6 m/s. The results can be reference for theoretical study and engineering applications related to VAFTCEPGD. 相似文献