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A double-multiple streamtube model for vertical axis wind turbines of arbitrary rotor loading

机译:任意转子负荷垂直轴风风力涡轮机的双倍流模型

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We introduce an improved formulation of the double-multiple streamtube (DMST) model for the prediction of the flow quantities of vertical axis wind turbines (VAWT). The improvement of the new formulation lies in that it renders the DMST valid for any induction factor, i.e., for any combination of rotor solidity and tip speed ratio. This is done by replacing the Rankine–Froude momentum theory of the DMST, which is invalid for moderate and high induction factors, with a new momentum theory recently proposed, which provides sensible results for any induction factor. The predictions of the two DMST formulations are compared with VAWT power measurements obtained at Princeton's High Reynolds number Test Facility, over a range of tip speed ratios, rotor solidities, and Reynolds numbers, including those experienced by full-scale turbines. The results show that the new DMST formulation demonstrates a better overall performance, compared to the conventional one, when the rotor loading is moderate or high.
机译:我们介绍了一种改进的双多流动管(DMST)模型的制剂,用于预测垂直轴风力涡轮机(VAWT)的流量。新配方的改善在于,它使得DMST对任何感应因子有效,即转子固体和尖端速度比的任何组合。这是通过取代DMST的Qualine-Froude动量理论来完成的,这对于中等和高感应因子无效,最近提出了一种新的动量理论,为任何诱导因子提供了明智的结果。将两个DMST配方的预测与在普林斯顿的高雷诺数测试设施中获得的VAWT功率测量值进行比较,在一系列尖端速度比,转子稳定度和雷诺数,包括由全规模涡轮机经历的那些。结果表明,当转子负载适中或高时,新的DMST配方显示出更好的整体性能。

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