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A radial inflow air turbine design for a vented oscillating water column

机译:径向摆动的空气涡轮机,用于通风的振荡水柱

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The oscillating-water-column (OWC) is a ubiquitous style of wave-energy-converter for harnessing significant power from ocean waves. A new configuration of OWC described here as a vented-OWC provides opportunity to simplify air-turbine design by limiting the power extraction to inhalation mode. The asymmetric airflow profile of the vented-OWC requires a unidirectional-turbine configuration to be adopted.The focus of this study is to analyse a unidirectional radial air-inflow-turbine design using Computational-Fluid-Dynamics (CFD) suitable for application with a vented-OWC. It is found that downstream of the rotor can cause significant energy losses due to its narrow flow passage. Two configurations of an inward-flow radial turbine were also compared, the first by keeping the casing height constant throughout the turbine domain and the second by increasing the casing height in a way to keep a constant sectional area from inlet to the outlet of the turbine domain. The latter configuration obtained a ten percent gain in peak efficiency compared to the first. The difference is identified as fewer energy losses at the downstream section and comparably higher torque for the same flow-coefficient. Introduction of downstream-guide-vanes was found to retard the chocking phenomenon, which offers a wider operational range for the radial-inflow design. (C) 2018 Elsevier Ltd. All rights reserved.
机译:振荡水柱(OWC)是一种波能转换器,用于利用海浪中的大量能量。通过将功率提取限制为吸入模式,此处描述为OOW的OWC的新配置提供了简化空气涡轮设计的机会。通风式OWC的非对称气流分布需要采用单向涡轮配置。本研究的重点是使用计算流体动力学(CFD)分析单向径向空气流入涡轮设计,该设计适用于与通风的OWC。已经发现,转子的下游由于其狭窄的流动通道而可能导致显着的能量损失。还比较了向内径流式涡轮机的两种配置,第一种通过在整个涡轮机区域内保持壳体高度恒定,第二种通过增加壳体高度来保持从涡轮机进口到出口的恒定截面积。域。与第一种配置相比,后一种配置的峰值效率提高了10%。差异被确定为下游部分的能量损失较少,而对于相同的流量系数,扭矩却相对较高。发现引入下游导流叶片可以抑制阻塞现象,从而为径向流入设计提供了更大的工作范围。 (C)2018 Elsevier Ltd.保留所有权利。

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