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Comparative analysis of the theoretical models of ideal propulsor, ideal fluid brake, ideal screw propeller and ideal axial wind turbine

机译:理想推进器,理想流体制动器,理想螺旋桨和理想轴向风力发电机的理论模型的比较分析

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The article presents a detailed discussion of the theoretical models of four different fluid dynamic devices: an ideal propulsor, an ideal fluid brake, an ideal screw propeller and an ideal turbine. The four models are presented with all relevant mathematical formulae regarding the forces, the power and the efficiency. It is demonstrated that the application of the model of an ideal optimum fluid brake according to the Betz theorem for determination of the maximum effectiveness coefficient of an axial wind turbine is not correct. In the case of a turbine the inclusion of important rotational flow losses may increase the maximum value of the turbine effectiveness coefficient above the level defined by Betz. Therefore the model of an ideal turbine should be an inversion of the model of an ideal screw propeller. This conclusion is supported by numerical calculations. It may influence the design procedures of wind turbines and may lead to increase in their efficiency.
机译:本文详细讨论了四种不同的流体动力装置的理论模型:理想的推进器,理想的流体制动器,理想的螺旋桨和理想的涡轮机。给出了四个模型,其中包含有关力,功率和效率的所有相关数学公式。结果表明,根据贝兹定理的理想最优流体制动器模型在确定轴向风力发电机的最大效率系数中的应用是不正确的。在涡轮机的情况下,包含重要的旋转流量损失可能会使涡轮机效率系数的最大值增加到Betz所定义的水平之上。因此,理想涡轮机的模型应该是理想螺旋桨的模型的反转。这一结论得到了数值计算的支持。它可能会影响风力涡轮机的设计程序,并可能导致其效率提高。

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