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Research on buoy-chain-sprocket wave energy capture technology

机译:浮标链轮波能量捕获技术研究

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A high-reliability, low-cost buoy-chain-sprocket wave energy capture device is proposed. Resonance theory is used to improve its wave energy capture efficiency and reduce its cost. The testing principle of the buoy-chain-sprocket model is proposed, and comparable resonant and nonresonant experimental floating body models were constructed based on finite depth linear wave theory and the resonance principle. Then the methods and results of the model experiments are described. Based on using Morison equation to calculate wave load, simulation and verification of the model experiment were conducted by using AQWA and OrcaFlex software. Finally, to eliminate the size effect and the impact of one-way wave energy collection, based on the simulation technology described above, sea-state prototype models of resonant and nonresonant buoy-chain-sprocket wave energy capture devices with one-way and two-way acquisition characteristics were constructed. Simulations were then conducted to get the maximum wave energy gathering efficiency. The research result indicates that the nonresonant buoy-chain-sprocket wave energy capture device with one-way acquisition has higher wave energy capture efficiency than the resonant buoy-chain-sprocket wave energy capture device.
机译:提出了一种高可靠性,低成本的浮标链轮链轮能量捕获装置。共振理论用于改善其波能量捕获效率并降低其成本。提出了浮标链轮模型的测试原理,基于有限深度线性波理论和共振原理,构建了可比较的共振和非族化实验浮体模型。然后描述了模型实验的方法和结果。基于使用Morison方程来计算波浪载荷,通过使用AQWA和ORCAFLEX软件进行模型实验的模拟和验证。最后,为了消除单向波能量收集的尺寸效应和冲击,基于上述仿真技术,具有单向和两个谐振和非族化浮标链轮波能量捕获装置的海拔原型模型 - 道路采集特征是构建的。然后进行仿真以获得最大波动能量采集效率。该研究结果表明,非族代浮标链轮波能量捕获装置具有单向获取具有比谐振浮标链轮链波能量捕获装置更高的波能捕获效率。

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