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Blockage effect correction for a scaled wind turbine rotor by using wind tunnel test data

机译:利用风洞测试数据校正比例缩放风力发电机转子的阻塞效应

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This paper discusses the procedure of a blockage effect correction method involving small-scale wind turbine rotor experimental data. To simulate the aerodynamic performance of full-scale rotors in the field, however, measured data from scaled model experiments need to be analyzed appropriately. One of the most important elements of such an analysis is a procedure to remove the blockage effect of the wind tunnel wall from the measured power data. In this paper, a correction algorithm proposed as part of Glauert's blockage effect correction method is used to process the data from a wind turbine rotor tested with three different wind tunnel sizes. Also, this study considered the modified blockage effect correction method, which has been used to process the rotor thrust data in closed-circuit wind tunnels and open-circuit wind tunnels. A small-scale rotor was tested under the same operating conditions, i.e., the same advance ratio, rotating speed, rotor torque and speed of the wind tunnel. The small-scale wind turbine rotor has a diameter of 1.408 m and a rotating speed according to the tip speed ratio. In each case, the effect of the blockage ratio and aerodynamic characteristics are determined using wind tunnel test results and with a simple analytical correction method. The results of the modified correction method show that the aerodynamic performance levels during a wind tunnel test are cleared by the blockage effect.
机译:本文讨论了包含小规模风力涡轮机转子实验数据的阻塞效应校正方法的过程。为了在现场模拟全尺寸转子的空气动力学性能,需要对比例模型实验的测量数据进行适当分析。此类分析的最重要元素之一是从测量的功率数据中消除风洞壁的阻塞效应的过程。在本文中,作为Glauert的阻塞效应校正方法的一部分,提出了一种校正算法,用于处理以三种不同风洞尺寸测试的风力涡轮机转子的数据。此外,本研究还考虑了改进的阻塞效应校正方法,该方法已用于处理闭路风洞和开路风洞中的转子推力数据。在相同的工作条件下,即在相同的前进比,转速,转子扭矩和风洞速度下,对小型转子进行了测试。小型风力涡轮机转子的直径为1.408 m,转速根据叶尖速比而定。在每种情况下,使用风洞测试结果和简单的分析校正方法即可确定堵塞率和空气动力特性的影响。改进的修正方法的结果表明,风洞试验期间的空气动力学性能水平被堵塞效应所清除。

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