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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Gas dynamic analysis of the performance of diffuser augmented wind turbine
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Gas dynamic analysis of the performance of diffuser augmented wind turbine

机译:扩压式风力发电机性能的气体动力学分析

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摘要

A diffuser augmented wind turbine (DAWT) is considered an important application of the advanced concepts to improve the attractiveness of wind energy. The present paper aims to find a theoretical demonstration of DAWT by using theoretical analysis, mathematical models, assumptions, estimations and maximization of power coefficients and augmentation ratios, in addition to computer programs for calculations and drawings. The final results show that the maximum power coefficient (Cpd{sub}0) and augmentation ratio (Rb) relative to Betz - are directly proportional to pressure recovery factor (Cr), turbine factor (Ct), and maximum velocity ratio (N{sub}0), but inversely proportional to overall recovery factor (C{sub}0) of diffuser. The power coefficient (Cpd{sub}0) of DAWT reaches 1.5 at C{sub}0≈-0 5, N{sub}0≈1.0 and Cr≈0.5 but the augmentation ratio (Rb) reaches 6.0 at C{sub}0≈-0.5, Cr≈0 9 and reaches 7.0 at N{sub}0=≈1.0 and Ct N{sub}1.0, which gives a good application for DAWT systems.
机译:扩散器增强型风力涡轮机(DAWT)被认为是先进概念在提高风能吸引力方面的重要应用。本文旨在通过理论分析,数学模型,假设,功率系数和增强比的估计和最大化,以及用于计算和绘制的计算机程序,找到DAWT的理论演示。最终结果表明,相对于Betz的最大功率系数(Cpd {sub} 0)和增大比(Rb)与压力恢复系数(Cr),涡轮机系数(Ct)和最大速度比(N { sub} 0),但与扩散器的总恢复因子(C {sub} 0)成反比。 DAWT的功率系数(Cpd {sub} 0)在C {sub}0≈-05,N {sub}0≈1.0和Cr≈0.5时达到1.5,而增强比(Rb)在C {sub}时达到6.0。 0≈-0.5,Cr≈09,在N {sub} 0 =≈1.0和Ct N {sub} 1.0时达到7.0,在DAWT系统中具有良好的应用前景。

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