波浪电场设备的尺寸:能量储存和电缆

A. Blavette, D. O'Sullivan, Tony W. Lewis, Michael G. Egan
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引用次数: 0

摘要

波浪能在很大程度上仍未被开发,但其储量特别丰富,未来可能在许多国家的能源结构中占据重要份额。然而,大多数波浪能转换器产生的功率波动很少或没有存储手段或没有适当的控制策略,可能会使波浪场连接的本地网络的电能质量恶化。它们尤其可能产生过度的闪烁。在本研究的第一部分中,研究了符合典型闪烁要求的波浪电场所需的最小存储量。除了引起电能质量问题外,波浪装置产生的快速和高振幅功率峰值也可能使波浪电场电气元件的最佳尺寸变得更加复杂,其成本高度依赖于它们的额定功率。这种说法也适用于海底电缆,因为潜在流过它们的最大电流似乎不再是确定其最佳额定电流的相关标准。因此,本研究的第二部分侧重于海底电缆所需的最小额定电流,以避免其热过载。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dimensioning the equipment of a wave farm: Energy storage and cables
Still largely untapped, wave energy is particularly abundant and may represent an important share in the energy mix of many countries in the future. However, the power fluctuations generated by most wave energy converters with little to no storage means or without suitable control strategies may deteriorate the power quality of the local network to which wave farms will be connected. They may in particular generate an excessive level of flicker. The minimum amount of storage required for a wave farm to be grid compliant with respect to typical flicker requirements was investigated and is presented in the first part of this study. Besides giving rise to power quality issues, the rapid and high amplitude power peaks generated by wave devices may also render more complex the optimal dimensioning of the wave farm electrical components, whose cost is highly dependent on their power rating. This statement applies also to submarine cables, as the maximum current flowing potentially through them seems to be no longer a relevant criterion for determining their optimal current rating. Hence, the second part of the presented study focuses on the minimum current rating required from a submarine cable to avoid its thermal overloading.
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