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The effects of geometrical buoy shape with nonlinear Froude-Krylov force on a heaving buoy point absorber

机译:几何浮标形状与非线性Froude-Krylov力对浮浮力的影响

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This study examined the effects of buoy shape and Nonlinear Froude-Krylov force (NFK) on a heaving-buoy-type Wave Energy Converter (WEC). Based on the Maclaurin expansion, the theoretical solutions of the NFK were derived for three different buoy shapes; hemispheric buoy, circular vertical cylinder, and truncated conical cylinder. A hydraulic power take-off system was adopted, and the latching control strategy was applied to maximize the extracted power from the WEC. The nonlinear effects of the Froude-Krylov force and restoring force on the heaving point absorber were investigated by comparing the heave Response Amplitude Operator (RAO) and time-averaged power extraction. The results showed that the conventional linear analyses were overestimated by up to 50% under the high amplitude wave condition. The latching control strategy was the most effective when peak wave period of regular or irregular wave was 0.4–0.45 times the heave natural period of the buoy.
机译:该研究检测了浮标形状和非线性Froude-Krylov力(NFK)对浮标浮标型波能量转换器(WEC)的影响。 基于Maclaurin扩展,NFK的理论溶液源于三种不同的浮标形状; 半球形浮标,圆形垂直圆筒和截短的锥形圆筒。 采用液压动力输出系统,应用锁定控制策略来最大化来自WEC的提取功率。 通过比较升降响应幅度算子(RAO)和时间平均功率提取来研究FRoude-Krylov力和恢复力的非线性效应。 结果表明,在高幅度波条件下,常规线性分析高达50%升高至50%。 当常规或不规则波的峰值波浪时期为0.4-0.45倍的浮标的浮标自然时期时,锁存控制策略是最有效的。

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