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水平轴风力机非线性尾流模型的研究

Reseach of The Nonlinear Wake Model of Horizontal Axis Wind Turbine

中文摘要英文摘要

现有的线性尾流(圆柱流面)模型,将转轮看作是由数目无限多弦长无限小的叶片所组成的"制动圆盘",没有考虑叶片展向的变环量分布和诱导速度的展(径)向分量,认为从叶片尾缘脱落的各尾涡束都位于各自的圆柱面上,这显然与实际观察到的尾涡结构不符。从而提出了"非线性"尾迹模型,该模型将转轮后的尾流旋涡系分为沿转轮轴的中心涡、沿叶片轴的附着涡和从叶片尾缘处脱落且伸展到无限远处的尾涡系。在该模型下使用Biot-Savart定律推导出各旋涡系诱导速度的积分方程。

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.

王久鑫、张昇龙、杨瑞、夏巍巍

风能、风力机械

水平轴风力机尾流模型诱导速度积分方程

horizontal axis wind turbineswake modelinduced velocityintegral equation

王久鑫,张昇龙,杨瑞,夏巍巍.水平轴风力机非线性尾流模型的研究[EB/OL].(2014-03-07)[2025-08-16].http://www.paper.edu.cn/releasepaper/content/201403-245.点此复制

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