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Wind tunnel measurements for the characterization of a small scale monoplane Wells turbine

机译:风洞测量用于表征小型单平面Wells涡轮机

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In the field of wave energy harnessing, Oscillating Water Column (OWC) devices are nowadays a consolidated technology. In OWC energy converters, waves generate an oscillating flow, whose energy can be effectively captured, for instance, by means of self-rectifying Wells turbines. In the design of Wells turbines, main issues are the improvement of their peak efficiency and the widening of their operational range. In order to reach these goals, a deep knowledge of the turbine fluid dynamic performance is essential. This paper presents the results of the experimental investigation of a small scale monoplane Wells turbine, tested in an open circuit low speed wind tunnel of the suction type in order to characterize its performance in terms of non-dimensional parameters, namely, torque and pressure drop coefficients and efficiency. The prototype under investigation, with blades of constant chord and NACA0015 profile, has been designed in order to be matched with a REWEC (Resonant Wave Energy Converter) breakwater, which had been located off the beach of Reggio Calabria. The REWEC under consideration was an excellent small scale model of full scale sea wave energy conversion devices for oceanic applications. Results have been compared with previous in-field tests, showing a very good agreement.
机译:在波浪能利用领域,如今,振荡水柱(OWC)设备已成为一项综合技术。在OWC能量转换器中,波会产生振荡流,该振荡流的能量可以例如通过自整流Wells涡轮机有效地捕获。在Wells涡轮机的设计中,主要问题是峰值效率的提高和运行范围的扩大。为了达到这些目标,对涡轮流体动力性能的深入了解至关重要。本文介绍了在吸入型开路低速风洞中测试的小型单平面韦尔斯涡轮机的实验研究结果,以便根据无量纲参数(即扭矩和压降)表征其性能。系数和效率。所研究的原型具有恒定弦和NACA0015轮廓的叶片,旨在与位于雷焦卡拉布里亚海滩附近的REWEC(共振波能量转换器)防波堤相匹配。正在考虑的REWEC是用于海洋应用的全尺寸海浪能量转换装置的极好的小型模型。将结果与以前的现场测试进行了比较,显示出很好的一致性。

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