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Limiting heave response of a wave energy device by draft adjustment with upper surface immersion

机译:通过上表面浸入的吃水深度调整来限制波浪能设备的升沉响应

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Many studies have been published concerning the influence of the immersed shape (in still water) of a floating body on its response and power capture from ocean waves. With a few notable exceptions, much of this analysis has assumed small amplitude motion and linear models have been employed to predict response. The form of the upper surface of such a body has received little attention. Here, we show how the shape of the upper (top) surface of a floating body can be designed to ensure that the response amplitude of the body is within a specified value. This is of considerable importance to the survivability of wave energy devices. The approach used is to achieve a large increase of both natural period and hydrodynamic damping for only a small change of float mass. These two factors impose a hydrodynamic limit on the displacement which may be exploited to avoid the 'end-stop' problem often encountered in wave device design. To demonstrate the change of response, experimental measurements are presented of the response of an axisymmetric float with rounded base and conical upper surface;with rounded perimeter due to a range of regular, irregular and focused, wave conditions. Power extraction is not considered since the mechanically undamped response represents the worst case. In contrast to a simple, straight-sided axisymmetric float, a smaller change of ass is required to satisfy a particular response amplitude limit. Although a significant reduction is not expected, hydrodynamic damping may reduce with increasing physical scale, and this remains to be quantified.
机译:关于浮体的沉入形状(在静止水中)对其响应和从海浪中捕获功率的影响,已经发表了许多研究。除少数几个值得注意的例外外,大部分分析都假设振幅运动较小,并且已采用线性模型来预测响应。这种主体的上表面的形式很少受到关注。在这里,我们展示如何设计浮体的上(顶)表面的形状,以确保浮体的响应幅度在指定值内。这对于波浪能设备的生存能力具有重要意义。所采用的方法是在仅改变浮子质量的情况下实现自然周期和流体动力阻尼的大幅增加。这两个因素对位移施加了流体动力限制,可以利用该限制来避免在波浪设备设计中经常遇到的“终点停止”问题。为了证明响应的变化,对具有圆形基部和圆锥形上表面的轴对称浮子的响应进行了实验测量;由于一系列规则的,不规则的和集中的波浪条件,具有圆形的周长。由于机械无阻尼响应代表最坏的情况,因此不考虑功率提取。与简单的直边轴对称浮子相比,需要较小的驴距变化才能满足特定的响应幅度限制。尽管预计不会显着减少,但是流体动力阻尼可能会随着物理尺寸的增加而减小,这仍有待量化。

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