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EVALUATION OF IMPULSE TURBINES FOR A WAVE ENERGY CONVERTER

机译:波形能量转换器的脉冲涡轮的评估

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The extraction of wave energy through self-rectifying air turbine is one of the emerging technologies for oscillating water column (OWC) based wave energy devices. In the present effort, a bi-directional impulse (BDI) turbine is designed and the performance parameters were found numerically and compared with an existing unidirectional impulse (UDI) turbine. A brief analytical formulation through similarity laws, to find a dynamically similar BDI turbine using pressure drop vs flow characteristics, gives the approximate diameter range equivalent to the reference UDI turbine. The results are used to reduce the range of diameters and it is found that the characteristics are matching with the reference UDI turbine. The maximum and minimum diameters among the selected range are considered for detailed computational fluid dynamics (CFD) analysis. These two BDI turbines are modeled and meshed in ICEM CFD 14.5. The commercial CFD code CFX 14.5 is used for the numerical simulations. The Reynolds-averaged Navier-Stokes (RANS) equations with the standard k-c scalable wall function model arc solved to obtain the performance parameters. A detailed flow physics of the BDI turbines has also been included.
机译:通过自整流式空气涡轮机提取波浪能是用于振荡基于水柱(OWC)的波浪能装置的新兴技术之一。在目前的工作中,设计了双向脉冲(BDI)涡轮机,并通过数值找到了性能参数,并将其与现有的单向脉冲(UDI)涡轮机进行了比较。通过相似性定律的简短分析公式,使用压降与流量特性来找到动态相似的BDI涡轮机,得出的近似直径范围等效于参考UDI涡轮机。结果用于减小直径范围,并且发现其特性与参考UDI涡轮匹配。对于详细的计算流体动力学(CFD)分析,应考虑所选范围内的最大和最小直径。这两个BDI涡轮在ICEM CFD 14.5中进行了建模和网格化。商业CFD代码CFX 14.5用于数值模拟。对具有标准k-c可缩放壁函数模型的雷诺平均Navier-Stokes(RANS)方程进行求解,以获得性能参数。 BDI涡轮机的详细流动物理特性也已包括在内。

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