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A numerical study on the hydrodynamic impact of device slenderness and array size in wave energy farms in realistic wave climates

机译:真实波浪气候下波浪能源农场设备细长度和阵列尺寸对水动力影响的数值研究

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摘要

The future of wave energy converters lies in the design and realization of farms comprising of several devices, given the level of actual power flow for the individual devices and because of several operational issues. Therefore, not only the hydrodynamics of individual and isolated devices should be analysed, but interactions among devices within an array must also be carefully evaluated. In this paper, the authors attempt to parameterize the behaviour of small-, medium- and large-arrays of wave energy converters, in a particular staggered configuration, at four different locations characterized by realistic wave climates. The arrays studied in the present paper consist of heaving cylinders of different slenderness ratios. It turns out that for arrays of very short inter-device distances, regardless of the cylinder and array size, interactions are strong and lead to not negligible effects of destructive interference (total power reduction compared to the sum of isolated devices). Under these conditions, the bigger the array, the stronger the interactions and the higher the loss of power. However, a range of inter-device distances, referred to as intermediate region, where the power absorption is consistent and the interaction effect appears to be positive, has been found. This intermediate region is easily detectable for small arrays, but loses its ideal characteristics with the increase of the size of the array.
机译:鉴于单个设备的实际功率水平以及一些运行问题,波浪能转换器的未来在于包含多个设备的电场的设计和实现。因此,不仅应分析单个和隔离设备的流体动力学,而且还必须仔细评估阵列中设备之间的相互作用。在本文中,作者试图在特定的交错配置下,在以实际波浪气候为特征的四个不同位置,对小型,中型和大型阵列的波能转换器的行为进行参数化。本文研究的阵列由不同细长比的起伏圆柱体组成。事实证明,对于设备间距离非常短的阵列,无论圆柱体和阵列大小如何,相互作用都很强,并且导致相消干扰的影响不可忽略(与隔离设备的总和相比,总功率降低)。在这些条件下,阵列越大,相互作用越强,功率损耗也越大。然而,已经发现了器件间距离的范围,称为中间区域,在该区域中,功率吸收是一致的,并且相互作用效果似乎是正的。对于小阵列,该中间区域很容易检测到,但是随着阵列尺寸的增加,它会失去理想的特性。

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