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On the capture width of wave energy converters.

机译:关于波能转换器的捕获宽度。

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摘要

This paper extends the theory on capture width, a commonly used performance indicator for a wave energy converter (WEC). The capture width of a linear WEC is shown to depend on two properties: the spectral power fraction (a property introduced in this paper), which depends entirely on the sea state, and the monochromatic capture width, which is determined by the geometry of the WEC and the chosen power take off (PTO) coefficients. Each of these properties is examined in detail. Capture width is shown to be a measure of how well these two properties coincide. A study of the effects of PTO control on the capture width suggests that geometry control, a form of control that has not been the focus of much academic research, despite its use in the wave energy industry, deserves more attention. The distinction between geometry control and PTO control is outlined. While capture width is a valuable design tool, its limitations must be recognised. The assumptions made in the formulation of capture width are listed, and its limitations as a tool for estimating annual power capture of a WEC are discussed.
机译:本文扩展了捕获宽度的理论,捕获宽度是波能转换器(WEC)的常用性能指标。线性WEC的捕获宽度显示为取决于两个属性:光谱功率分数(本文中介绍的一种属性),其完全取决于海洋状态;以及单色捕获宽度,其由电池的几何形状确定。 WEC和所选的功率起飞(PTO)系数。这些属性中的每一个都将详细检查。捕获宽度显示出这两个属性的重合程度。对PTO控制对捕获宽度的影响的研究表明,几何控制是一种控制形式,尽管它已在波浪能行业中使用,但它并不是很多学术研究的重点,尽管它已在波浪能源行业中得到了应用。概述了几何控制和PTO控制之间的区别。尽管捕获宽度是一种有价值的设计工具,但必须认识到其局限性。列出了捕获宽度公式中的假设,并讨论了其作为估算WEC年功率捕获工具的局限性。

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