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Study on the Performance of the “Pendulor” Wave Energy Converter in an Array Configuration

机译:阵列配置中“摆式”波能转换器的性能研究

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For over three decades the “Pendulor” wave energy device has had a significant influence in this field, triggering several research endeavours. It includes a top-hinged flap propelled by the standing waves produced in a caisson with a back wall on the leeward side. However, one of the main disadvantages which impedes its progress is the enormous expense involved in the construction of the custom made typical caisson structure, about a little more than one-quarter of the wave length. In this study, the influence of such design parameters on the performance of the device is investigated, via numerical modelling for a device arranged in an array configuration, for irregular waves. The potential wave theory is applied to derive the frequency-dependent hydrodynamic parameters by making a distinction in the fluid domain into a separate sea side and lee side. The Cummins equation was utilised for the development of the time domain equation of motion while the transfer function estimation methods were used to solve the convolution integrals. Finally, the device was tested numerically for irregular wave conditions for a 50 kW class unit. It was observed that in irregular wave operating conditions, the caisson chamber length could be reduced by 40% of the value estimated for the regular waves. Besides, the device demonstrated around 80% capture efficiency for irregular waves thus allowing provision for avoiding the employment of any active control.
机译:在过去的三十多年中,“ Pendulor”波能装置在该领域产生了重大影响,引发了数项研究工作。它包括由沉箱中产生的驻波推动的顶部铰接式襟翼,背壁位于背风侧。但是,阻碍其发展的主要缺点之一是定制的典型沉箱结构的建造涉及巨大的费用,大约是波长的四分之一多。在这项研究中,通过对以不规则波布置为阵列配置的设备进行数值建模,研究了此类设计参数对设备性能的影响。应用势波理论,通过将流体域分为独立的海侧和回风侧来推导频率相关的水动力参数。康明斯方程用于开发时域运动方程,而传递函数估计方法用于求解卷积积分。最后,对该设备进行了数值测试,测试了50 kW级机组的不规则波情况。据观察,在不规则波浪操作条件下,沉箱腔室的长度可以减少常规波浪估计值的40%。此外,该设备对不规则波表现出约80%的捕获效率,因此可以避免使用任何主动控件。

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