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Time domain prediction of power absorption from ocean waves with latching control

机译:具有闭锁控制的海浪功率吸收的时域预测

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A three-dimensional panel method using Neumann-Kelvin method is presented for the transient wave-body interaction problems in order to absorb maximum power from the sea. The exact initial boundary value problem is linearized about a uniform flow, and recast as an integral equation using the transient free-surface Green function. The hydrodynamics part of the solution including radiation and diffraction problem is solved as impulsive velocity problem. A discrete control of latching is used to increase the bandwidth of the efficiency of the wave energy converters (WEC). When latching control is applied to WEC in the case of off-resonance condition it increases the amplitude of the motion as well as absorbed power. It is assumed that the exciting force is known in the close future and that body is hold in position during the latching time. A heaving hemisphere as a point-absorber WEC is used for the numerical prediction of the different parameters. The calculated hydrodynamics coefficients, response amplitude operator, absorbed power, relative capture width of this device compared with analytical and other published results.
机译:针对瞬态波体相互作用问题,提出了一种使用Neumann-Kelvin方法的三维面板方法,以吸收来自海洋的最大功率。精确的初始边界值问题围绕均匀流线性化,并使用瞬态自由表面格林函数将其重新积分为一个积分方程。解决方案中包括辐射和衍射问题的流体力学部分作为脉冲速度问题解决。闭锁的离散控制用于增加波能转换器(WEC)效率的带宽。当在非共振条件下将锁存控制应用于WEC时,它将增加运动的幅度以及吸收的功率。假设在不久的将来就知道了激振力,并且在闭锁期间将主体保持在适当的位置。将起伏的半球作为点吸收器WEC用于不同参数的数值预测。与分析结果和其他已发布的结果相比,该设备的计算出的流体力学系数,响应幅度算符,吸收功率,相对捕获宽度。

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