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首页> 外文期刊>Applied Ocean Research >Hydrodynamics of the multi-float wave energy converter M4 with slack moorings: Time domain linear diffraction-radiation modelling with mean force and experimental comparison
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Hydrodynamics of the multi-float wave energy converter M4 with slack moorings: Time domain linear diffraction-radiation modelling with mean force and experimental comparison

机译:具有松弛系泊的多浮波能量转换器M4的流体动力学:时域线性衍射 - 辐射辐射模拟,平均力和实验比较

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摘要

The response and power capture of the multi-float wave energy converter M4 has been shown to be approximately predicted by linear diffraction-radiation modelling, giving relatively high capture widths. In this study we model a 6-float configuration which has been investigated experimentally in irregular waves and take account of the mooring system. Second-order mean forces are included due to excitation forces as is standard, but also due to the rate of energy extraction from mechanical damping and radiation damping resulting from body motion. There are also second order effects due to coupling between heave and surge. Operational conditions with mechanical damping and extreme conditions without mechanical damping (giving worst case response) are investigated. The motion is almost independent of mooring forces from a single point mooring, known as slack-moored. In operational conditions mean mooring forces are in approximate agreement with experiment except for larger periods and peak forces are similar. For extreme waves large rotational response is predicted reasonably by linear diffraction-radiation modelling with a small representative drag coefficient, as is horizontal acceleration, although peak values may be underestimated for the largest wave heights. However mean mooring forces are markedly underestimated and peak values generally overestimated. The overall conclusion is that linear modelling gives reasonable prediction of response in all wave conditions, and power capture when operational, but resulting second order mean forces only give approximate predictions for smaller wave heights.
机译:已经示出了多浮波能量转换器M4的响应和功率捕获通过线性衍射 - 辐射建模大致预测,给出了相对高的捕获宽度。在这项研究中,我们模拟了一个6浮点的配置,该配置已经在实验上实验研究了不规则的波浪并考虑到系泊系统。由于标准的励磁力,包括励磁力的二阶平均力,而且由于由机身运动产生的机械阻尼和辐射阻尼的能量提取速率。由于升降和浪涌之间的耦合,也存在二阶效应。研究了机械阻尼和极端条件的操作条件,没有机械阻尼(给予最坏情况响应)。动作几乎独立于从单点系泊的系泊力,称为松懈。在运营条件下,平均停泊力与实验近似协议,除了较大的时期和峰值力相似。对于极端波,通过具有小代表性拖动系数的线性衍射 - 辐射建模来预测大的旋转响应,因为水平加速度,尽管可以为最大波高度低估峰值。然而,平均停泊力显着低估并且通常高估的峰值。总体结论是线性建模在所有波条件中提供了合理的响应预测,并且在操作时功率捕获,但是产生的二阶均值仅给出较小波高的近似预测。

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