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A new wave energy generation system based on vibration theory

机译:基于振动理论的新型波浪能发电系统

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Buoy-rope-sheave wave generation system is a new type floating and point absorbing wave energy generation system. Getting higher energy conversion efficiency and seeking the best damping coefficient are the important aspect of this paper. First, equation of buoy motion was established based on linear theory, harmonic vibration theory and viscous damping. The natural frequency and damping ratio was got from equation of motion. Then, the equation of motion was analyzed in frequency domain. The relation of damping coefficient and amplitude was got. Numerical calculation and optimization were taken for wave energy conversion using th`e relationship of energy dissipation in harmonic vibration. Finally, the result was verified by hydrodynamics software—AQWA, and the best damping coefficient was got. Results of numerical calculation and simulation basically consistent and damping coefficient was equal to 18000N ? s / m. The above theoretical analysis and simulation can be used to different buoys in different sea conditions, and it provides theoretical references for designing and manufacturing buoyrope- sheave wave generation system.
机译:浮绳轮波浪发电系统是一种新型的浮点吸波能量发电系统。获得更高的能量转换效率并寻求最佳的阻尼系数是本文的重要方面。首先,基于线性理论,谐波振动理论和粘性阻尼建立了浮标运动方程。从运动方程得到固有频率和阻尼比。然后,在频域中分析了运动方程。得到了阻尼系数与振幅的关系。利用谐波振动中的能量耗散关系,对波能转换进行了数值计算和优化。最后,通过水动力软件AQWA对结果进行了验证,得到了最佳的阻尼系数。数值计算和仿真结果基本一致,阻尼系数等于18000N? s /米上述理论分析和仿真可用于不同海况下的不同浮标,为浮标绳轮产生系统的设计和制造提供理论参考。

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