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Design and Optimization of an Oscillating Water Column Wave Energy Converter

机译:振荡水柱波能量变换器的设计与优化

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As the energy demand Increases, fossil fuels are giving way to other unconventional energy sources. Marine renewable energy, being one of them, offers a number of options to compete in this area. A wide-range of techniques were presented, studied and tested under real sea conditions. Amongst these marine converters, the Oscillating Water Column (OWC) stands out due to its simplicity, and robustness in turbulent sea conditions. In principle, the device leverages the succession of wave crests and troughs to either compress or suck air through a turbine that plays the role of a Power Take-Off device.The OWC's hydrodynamic performance depends upon the chamber's depth, the size of the water inlet and the position of the converter in relation to the free water surface.The objective of our study is to find the optimum output of a converter by methodically changing the geometry parameters and position in relation to the free water surface.For this purpose, we made an OWC That consists of a prototype parallelepiped air chamber, and came up with the following optimal configuration:Distance between the wave-making machine and the device; Water depth in the water column;Prototype's depth;Water inlet size.On the one hand, the obtained results show that the pairing of the geometrical parameters of the device and the condition of the system leads to an improvement in the hydrodynamic performance of the OWC. On the other hand, the various optima found make it possible to converge towards a frequency range close to the device’s natural frequency, which gives a considerable increase in the energy output.
机译:随着能源需求的增加,化石燃料正在促进其他非传统能源。作为其中之一的海洋可再生能源提供了许多竞争的选项。在真正的海洋状况下呈现,研究和测试了广泛的技术。在这些海洋转换器中,振荡水柱(OWC)由于其简单性和湍流海洋状况的鲁棒性而脱颖而出。原则上,该装置利用了波峰和槽的连续,以通过发挥电力消耗装置的作用的涡轮机来压缩或吸入空气。OWC的流体动力学性能取决于腔室的深度,进水口的尺寸取决于腔室的深度和转换器的位置与自由水表面有关。我们的研究目的是通过有条不紊地改变与自由水表面相关的几何参数和位置来找到转换器的最佳输出。我们制作了由原型平行六面体空气室组成的OWC,并提出了以下最佳配置:波动机和器件之间的距离;水柱中的水深;原型的深度;进水口尺寸。一方面,所获得的结果表明,设备的几何参数的配对和系统的状况导致OWC的流体动力学性能提高。另一方面,发现各种OPTAMA使得可以朝向靠近设备的固有频率的频率范围收敛,这在能量输出中提供了相当大的增加。

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