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Research of the Nonlinear Wake Model of HAWT

机译:HAWT的非线性唤醒模型研究

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In the existing linear wake (cylindrical surface) model of horizontal axis wind turbines, the rotor was taken as the actuator-disc composed of infinite blades with infinitesimal chords. The distribution of variable circulation along blade was not taken into account and the span-wise (or radial) component of induced velocity is totally ignored. And assumed that the all trailing vortex filament shed from blade trailing edge would locate on their own cylindrical stream-surface. This aerodynamic model for determination of wake configuration is obviously different from that actually observed wake in wind tunnel experiment. Therefore, a "nonlinear" wake model was proposed, in this model the wake vortex system was divided into the central vortex along rotor axis, the bound vortex along blade axis, the wake vortex sheets shed from blade trailing edge and extent into infinity behind the rotor. Then, on the basis of potential theory in fluid mechanics a set of integral equations for evaluation of induced velocity in wake were derived with Biot-Savart's formula.
机译:在水平轴风力涡轮机的现有的线性唤醒(圆筒面)模型中,转子被作为无限刀片无穷小和弦的构成的致动器 - 盘。沿着叶片可变循环的分布是不考虑和诱导速度的翼展(或径向)部件被完全忽略。而假设从叶片后缘的所有尾涡长丝棚会找到自己的圆柱流面。测定唤醒配置的此气动模型是从在风洞实验中实际观察到的唤醒明显不同。因此,“非线性”尾流模型提出,在该模型中尾涡流系统分为沿转子轴线的中央涡流,沿叶片轴线结合的涡流,尾涡流片散出从叶片的后缘和程度成背后的无穷转子。然后,在流体力学势理论的一组的在唤醒诱导速度用毕奥 - 萨伐尔公式导出评价积分方程的基础上。

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