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A TWIN UNIDIRECTIONAL IMPULSE TURBINE WITH FLUIDIC DIODE FOR WAVE ENERGY CONVERSION

机译:带有能量二极管的双单向脉冲涡轮进行波能转换

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As an air turbine equipped with oscillating water column (OWC) based wave energy plant, a rectification-valve system has been invented to date. However, this turbine system has problems with the durability of the valves and the complex mechanism. Moreover, it has a major fault in that the valves must be large for high output. Therefore, a twin unidirectional impulse turbine topology has been suggested in previous studies in order to use conventional unidirectional turbines without valves. The topology is composed of two unidirectional impulse turbines. However, the past study indicated that the mean efficiency of the topology was shown to be low, when the performance prediction of the topology in oscillating airflow was carried out by means of quasi-steady analysis. Further, the cause of the low efficiency is because part of the air flow gets through the unidirectional impulse turbine in the direction of low efficiency. In this study, a fluidic diode is adopted in order to suppress the air flow rate into the inefficient turbine in a twin unidirectional impulse turbine topology for wave energy plant, and the effect of the fluidic diodes on the performance of twin unidirectional impulse turbine topology is investigated by a wind tunnel test and computational fluid dynamics (CFD). Further, its usefulness is discussed from a view point of the turbine mean efficiency under unsteady flow condition.
机译:作为装备有基于振荡水柱(OWC)的波浪能设备的空气涡轮机,迄今为止已经发明了整流阀系统。但是,该涡轮系统在阀的耐久性和机构复杂方面存在问题。此外,它的主要缺点是阀门必须很大才能获得高输出。因此,在先前的研究中已经提出了双单向冲击式涡轮机拓扑,以便使用不带阀的常规单向涡轮机。该拓扑由两个单向脉冲式涡轮机组成。然而,过去的研究表明,当通过准稳态分析对拓扑在振荡气流中的性能进行预测时,拓扑的平均效率较低。此外,效率低的原因是因为一部分气流沿低效率的方向通过单向冲击式涡轮机。在这项研究中,采用射流二极管以抑制波能厂的双单向脉冲式涡轮拓扑中空气流入效率低下的涡轮机,并且流体二极管对双单向脉冲式涡轮拓扑性能的影响为通过风洞测试和计算流体力学(CFD)进行了调查。此外,从不稳定流动条件下的涡轮平均效率的角度讨论了其有用性。

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