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Comparison of inflow and outflow radial air turbines in vented and bidirectional OWC wave energy converters

机译:通风和外流径向风力涡轮机的比较和双向OWC波能量转换器

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This study analyses the aerodynamic performance of two unidirectional-radial-air-turbine configurations; inflow and outflow. These turbines were studied as the Power-Take-Off unit for application on a vented-OWC and a conventional-bidirectional-OWC with a twin-turbine topology, forming four different turbine-OWC configurations. These configurations were evaluated in terms of full-scale power extraction using extrapolated hydrodynamic experimental data of irregular waves for a King Island test site. The power extraction capacity was evaluated by defining a lower and upper bound of power generation under fixed and controlled-RPM schemes and the energy produced in each configuration was then compared against a state-of-the-art twin-rotor turbine. It was found that the difference between these power extraction bounds was lower in case of the outflow turbine, which shows this turbine is less sensitive to RPM variations than the inflow turbine. In addition, due to its lower resistance to the flow in direct mode, the outflow turbine has a smaller full-scale size than the inflow turbine. It was concluded that the outflow turbine provides better efficiency in a twin-turbine-OWC system, while the inflow turbine yields higher conversion efficiency in a vented-OWC system. The vented OWC equipped with a radial inflow turbine can obtain comparable power to the bidirectional OWC system. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究分析了两个单向径向空气 - 涡轮机配置的空气动力学性能;流入和流出。这些涡轮机被研究为用于在通风OWC和具有双涡轮机拓扑的通风OWC和传统双向OWC上施用的动力下降单元,形成四种不同的涡轮机OWC配置。通过使用外域电动动力学实验数据对王岛试验部位的不规则波的外推流体动力学试验来评估这些配置。通过定义固定和控制RPM方案下的发电的下限和上限来评价功率提取容量,然后将每个配置产生的能量与最先进的双转子涡轮进行比较。结果发现,在流出涡轮机的情况下,这些功率提取界限之间的差异降低,这表明该涡轮机比流入涡轮机更敏感到RPM变化。另外,由于其在直接模式下的耐速度较低,流出涡轮机具有比流入涡轮机更小的全尺寸尺寸。结论是流出涡轮机在双轮机-OWC系统中提供更好的效率,而流入涡轮机在通风系统中产生更高的转换效率。装备有径向流入涡轮机的通风OWC可以获得双向OWC系统的可比功率。 (c)2019 Elsevier Ltd.保留所有权利。

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