利用高保真数值模拟优化振荡波涌变换器的功率输出

Pál Schmitt , Henrik Asmuth , Björn Elsäßer
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引用次数: 29

摘要

振荡浪涌转换器是一种很有前途的近岸地区海浪能量收集技术。虽然已经进行了多年的研究,但波浪作用于结构的特征,特别是驱动力与速度、地表高程等波量的相位关系尚未得到详细的研究。造成这种情况的主要原因是缺乏合适的方法。使用水箱试验的实验研究不能直接获得总体水动力载荷,只能直接测量动力起飞系统的阻尼扭矩。非线性计算流体动力学方法直到最近才应用于这类装置的研究。本文提出了一种新的度量波转矩,它是在任意给定旋转角度下的总水动力转矩减去静水俯仰刚度。使用计算流体动力学方法研究了该度量值在一个波周期内和不同功率起飞设置下的特性变化。首先,线性化方法不能预测owsc典型工作状态下的最佳阻尼。然后,我们给出了不同阻尼水平下主要动力学参数之间的相位关系。尽管按照线性理论的预测,襟翼的工作似乎接近共振,但并没有发现明显的条件来定义最佳阻尼。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimising power take-off of an oscillating wave surge converter using high fidelity numerical simulations

Oscillating wave surge converters are a promising technology to harvest ocean wave energy in the near shore region. Although research has been going on for many years, the characteristics of the wave action on the structure and especially the phase relation between the driving force and wave quantities like velocity or surface elevation have not been investigated in detail. The main reason for this is the lack of suitable methods. Experimental investigations using tank tests do not give direct access to overall hydrodynamic loads, only damping torque of a power take off system can be measured directly. Non-linear computational fluid dynamics methods have only recently been applied in the research of this type of devices. This paper presents a new metric named wave torque, which is the total hydrodynamic torque minus the still water pitch stiffness at any given angle of rotation. Changes in characteristics of that metric over a wave cycle and for different power take off settings are investigated using computational fluid dynamics methods. Firstly, it is shown that linearised methods cannot predict optimum damping in typical operating states of OWSCs. We then present phase relationships between main kinetic parameters for different damping levels. Although the flap seems to operate close to resonance, as predicted by linear theory, no obvious condition defining optimum damping is found.

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