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Analytical and experimental investigation of hydrodynamic performance and chamber optimization of oscillating water column system

机译:振荡水柱系统的水动力性能分析与实验研究

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Among the numerous types of renewable energy technologies, wave energy technologies have been considered by many experts as one of the most promising for Taiwan. However, the amount of energy presently provided by wave energy technologies constitutes a minor percentage of Taiwan's total energy production. This paper presents experimental results using a laboratory water chamber, wherein the fundamental parameters of an oscillating water column (OWC) system's geometrical design are individually investigated and optimized for maximum amplification factor of wave energy to mechanically useful energy. The effects of back plate angle, fence plate and open wide parameters of chamber in a view of wave energy catching capability are analyzed. Three experimental models are evaluated to include a discussion of the back plate, fence plate, and open wide. The OWC's operation qualitatively differs from that predicted by linear theory, identify to critical flow characteristic; front wall down-wash in the water column. The surveys were then expanded to offer general arrangement or a planning material for the geometry optimization of the chamber that could potentially achieve the largest amplification factor of an oscillating water column (OWC) system. The amplification factor of the change in back angle of the OWC is significant. (C) 2016 Published by Elsevier Ltd.
机译:在众多可再生能源技术中,波浪能技术已被许多专家认为是台湾最有前途的技术之一。然而,目前波浪能技术提供的能量仅占台湾总能源生产的一小部分。本文介绍了使用实验室水室的实验结果,其中对振荡水柱(OWC)系统的几何设计的基本参数进行了单独研究,并对其进行了优化,以最大程度地提高波能对机械有用能的放大率。从波能捕获能力的角度分析了背板角度,围栏板和腔室敞口宽度参数的影响。对三个实验模型进行了评估,包括对背板,围栏板和敞口的讨论。 OWC的运行在质量上与线性理论预测的不同,确定临界流量特性。在水柱中冲洗前壁。然后扩大调查范围,为腔室的几何优化提供总体布置或规划材料,这有可能实现振荡水柱(OWC)系统的最大放大系数。 OWC的后角变化的放大倍数很重要。 (C)2016由Elsevier Ltd.出版

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