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The Dynamic Performance of Coaxial Double Column Wave Energy Converter (WEC)

机译:同轴双列波能量转换器(WEC)的动态性能

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A coaxial double-column wave energy converter (WEC) has been studied in this paper. The wave force of the floats and the hydrodynamic coefficients are solved by a semi-analytical solution method. We built time- and frequency-domain models and calculated the motion characteristics and power generation of the coaxial double-column WEC through the commercial software HydroSTAR and Intel Fortran. We use computers to build models of many different parameters and study the effects of different parameters on the motion performance and power generation capabilities of the device. They show that changing the diameter ratio of the upper float to the lower float can increase the output power of the device, and the smaller the diameter ratio, the larger the output power can be obtained. We also changed the depth of the damper plate and found that the deeper the damper plate, the higher the output power of the device. However, in general, the depth of the damper plate has no significant influence on the output power of the device.
机译:本文对同轴双柱波能量转换器(WEC)进行了研究。用半解析解法求解浮子的波浪力和流体动力系数。我们建立了时域和频域模型,并通过商业软件HydroSTAR和Intel Fortran计算了同轴双柱WEC的运动特性和发电量。我们使用计算机建立许多不同参数的模型,并研究不同参数对设备运动性能和发电能力的影响。他们表明,改变上浮子与下浮子的直径比可以增加设备的输出功率,而直径比越小,可以获得的输出功率就越大。我们还更改了阻尼板的深度,发现阻尼板越深,设备的输出功率就越高。然而,通常,阻尼板的深度对设备的输出功率没有显着影响。

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