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首页> 外文期刊>Journal of Fluid Mechanics >Extreme motion and response statistics for survival of the three-float wave energy converter M4 in intermediate water depth
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Extreme motion and response statistics for survival of the three-float wave energy converter M4 in intermediate water depth

机译:三浮波能量转换器M4在中间水深中存活的极端运动和响应统计

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This paper presents both linear and nonlinear analyses of extreme responses for a multi -body wave energy converter (WEC) in severe sea states. The WEC known as M4 consists of three cylindrical floats with diameters and draft which increase from bow to stem with the larger mid and stem floats having rounded bases so that the overall system has negligible drag effects. The bow and mid float are rigidly connected by a beam and the stern float is connected by a beam to a hinge above the mid float where the rotational relative motion would he damped to absorb power in operational conditions. A range of focussed wave groups representing extreme waves were tested on a scale model without hinge damping, also representing a more general system of interconnected cylindrical floats with multi-mode forcing. Importantly, the analysis reveals a predominantly linear response structure in hinge angle and weakly nonlinear response for the beam bending moment, while effects due to drift forces, expected to he predominantly second order, are not accounted for. There are also complex and violent free-surface effects on the model during the excitation period driven by the main wave group, which generally reduce the overall motion response. Once the main group has moved away, the decaying response in the free-vibration phase decays at a rate very close to that predicted by simple linear radiation damping. Two types of nonlinear harmonic motion arc demonstrated. During the free-vibration phase, there are only double and triple frequency Stokes harmonics of the linear motion, captured using a frequency doubling and tripling model. In contrast, during the excitation phase, these harmonics show much more complex behaviour associated with nonlinear fluid loading. Although hound harmonics are visible in the system response, the overall response is remarkably linear until temporary submergence of the central float (`dunking') occurs. 'this provides a strong stabilising effect for angular amplitudes greater than similar to 30 degrees and can he treated as a temporary loss of part of the driving wave as long as submergence continues. With an experimentally and numerically derived response amplitude operator (RAO), we perform a statistical analysis of extreme response for the hinge angle based on wave data at Orkney, well known for its severe wave climate, using the NORA10 wave hindcast. For storms with spectral peak wave periods longer than the RAO peak period, the response is controlled by the steepness of the sea state rather than the wave height. Thus, the system responds very similarly under the most extreme sea states, providing an upper bound for the most probable maximum response, which is reduced significantly in directionally spread waves. The methodology presented here is relevant to other single and multi-body systems including WECs. We also demonstrate a general and potentially important reciprocity result for linear body motion in random seas: the averaged wave history given an extreme system response and the average response history given an extreme wave match in time, with time reversed for one of the signals. This relationship will provide an efficient and robust way of defining a 'designer wave', for both experimental testing and computationally intensive computational fluid dynamics (CFD), for a wide range of wave structure interaction problems.
机译:本文介绍了严重海区多体波能量转换器(WEC)的极端反应的线性和非线性分析。被称为M4的WEC由三个圆柱形浮点组成,该圆柱形漂浮物,其直径和草稿从弓形增加到具有圆形底座的较大的中间和茎浮子,使得整个系统具有可忽略的阻力效应。弓和中浮子刚性地通过梁刚性连接,并且船尾浮动通过梁连接到中间浮子上方的铰链,其中旋转相对运动将阻尼以吸收在操作条件下的功率。在没有铰链阻尼的刻度模型上测试代表极端波的一系列聚焦波组,也代表具有多模迫使的互连圆柱形浮子的更通用系统。重要的是,分析揭示了铰链角度的主要线性响应结构和用于光束弯矩的弱非线性响应,而预期其主要是第二阶的漂移力导致的效果不会占。在由主波组驱动的激励时段期间,在模型期间还存在复杂和剧烈的自由表面效果,这通常会降低整体运动响应。一旦主组移开,就在自由振动相位衰减的衰减响应以非常接近的速率衰减,这是通过简单的线性辐射阻尼预测的速率。两种类型的非线性谐波运动弧。在自由振动阶段,仅使用倍频和三倍式模型捕获的线性运动的双倍和三频声谐波。相反,在激发阶段期间,这些谐波显示出与非线性流体负载相关的更复杂的行为。尽管在系统响应中可以看到猎犬谐波,但直到中央浮点(“扣篮”)的临时淹没,总体反应显着下线性。 '这为角度幅度提供了强大的稳定效果,其大于30度,并且只要浸没仍在继续,他就可以作为驾驶波部分的临时损失。利用实验和数值衍生的响应幅度算子(RAO),我们使用Nora10 Wave Hindcast来对orkney的波数据进行铰接角度的极端响应对极端响应的统计分析。对于具有比RAO峰期长的光谱峰值波段的雨量,响应由海水位的陡度而不是波高。因此,该系统在最极端的海洋状态下非常相似地响应,为最可能的最大响应提供上限,这在方向上扩展波显着减小。这里呈现的方法与包括WECS在内的其他单一和多体系相关的方法相关。我们还展示了随机海洋线性身体运动的一般和潜在的重要互动结果:给定极端系统响应的平均波历史和给定极端波匹配的平均响应历史,时间反转为其中一个信号。这种关系将提供一种有效且坚固的方式来定义“设计者波”,用于实验测试和计算密集型计算流体动力学(CFD),用于广泛的波浪结构相互作用问题。

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