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Design optimization of a novel vertical augmentation channel housing a cross-flow turbine and performance evaluation as a wave energy converter

机译:一种新型垂直增强通道的设计优化,将横流涡轮机和波能变换器的横流涡轮机和性能评估

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A novel vertical augmentation channel housing a direct-drive cross-flow turbine, with nozzles on both the sides of the turbine, was designed and an optimized configuration was obtained. The geometries of the guide nozzle and the front nozzle were optimized under steady flow conditions. The performance of the cross-flow turbine was analyzed using commercial computational fluid dynamics (CFD) code ANSYSCFX. The optimized design was then evaluated as a wave energy converter both experimentally and computationally. The waves in the numerical wave tank (NWT) were generated using a piston type wave-maker. The optimized design gave a maximum output power of 13.2 W and an efficiency of 48.31% at a wave height of 0.2 m and wave period of 2.75 s for a rotational speed of 35 rpm. The difference between numerical and experimental efficiencies was within 3.5%. In addition to this, particle image velocimetry was used to study the flow characteristics in the augmentation channel and the turbine. The results show that the CFD code captures the flow in the augmentation channel and around the turbine accurately. The optimized design, which occupies less space than other wave energy converters, can be used to efficiently harness energy from the waves. (c) 2021 Published by Elsevier Ltd.
机译:设计了一种新的垂直增强通道,其外壳是直接驱动的横流涡轮机,在涡轮机的两个侧面上具有喷嘴,并获得了优化的配置。在稳定的流动条件下优化导嘴和前喷嘴的几何形状。使用商业计算流体动力学(CFD)代码ANSYSCFX分析横流涡轮机的性能。然后通过实验和计算评估优化的设计作为波能量转换器。使用活塞式波形制造机产生数值波罐(NWT)中的波。优化的设计为13.2W的最大输出功率提供了13.2W的效率,在波高的波高的效率为0.2μm,波浪周期为35 rpm。数值和实验效率之间的差异在3.5%以内。除此之外,粒子图像速度计用于研究增强通道和涡轮机中的流动特性。结果表明,CFD代码精确地捕获增强通道和涡轮机周围的流动。优化的设计,占据不如其他波能转换器的空间,可用于有效地利用来自波的能量。 (c)2021由elestvier有限公司出版

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