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Measurement and simulation of the flow field around a triangular lattice meteorological mast

机译:三角格子气象桅杆周围流场的测量与模拟

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摘要

The international standard IEC 61400-12-1 “Wind turbines – Part 12-1: Power performance measurements of electricity producing wind turbines” aims to provide a uniform methodology that will ensure consistency, accuracy and reproducibility in the measurement and analysis of power performance by wind turbines. Annex G of this standard provides a methodology for the appropriate arrangement of instruments on the meteorological mast to ensure accurate measurement. For cup anemometers it provides recommendations about their location relative to the mast so that the effect of mast and boom interference on their output may be minimised. These recommendations are given for both tubular masts and lattice masts.This paper compares the flow distortion predicted by the IEC standard and the results of a 3D Computational Fluid Dynamics (CFD) simulation of a triangular lattice mast. Based on the results of wind tunnel and CFD simulation it was found that the flow distortion surrounding the lattice mast was over predicted by the method suggested in appendix G of IEC61400-12-1. Using the CFD data it was possible to determine, for a range of flow directions and mast heights, the distance from the mast that anemometers would need to be in order to be outside the flow distortion field.
机译:国际标准IEC 61400-12-1“风力涡轮机-第12-1部分:发电风力涡轮机的功率性能测量”旨在提供一种统一的方法,以确保在测量和分析功率性能时的一致性,准确性和可重复性。风力发电机。本标准的附件G提供了一种在气象桅杆上适当布置仪器的方法,以确保准确的测量。对于杯型风速计,它提供了有关其相对于桅杆的位置的建议,以使桅杆和吊杆干扰对其输出的影响最小。这些建议同时针对管状桅杆和桁架桅杆。本文比较了IEC标准预测的流动畸变和三角形桁架桅杆的3D计算流体动力学(CFD)仿真结果。根据风洞和CFD仿真的结果,发现采用IEC61400-12-1附录G中所建议的方法可以过度预测晶格桅杆周围的流动畸变。使用CFD数据,可以确定一定范围的流动方向和桅杆高度,以使风速计必须远离桅杆的距离才能超出流动畸变场。

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