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Validation of an Aero-Acoustic Wind Turbine Noise Model Using Advanced Noise Source Measurements of a 500kW Turbine

机译:利用先进的500kW汽轮机噪声源测量验证航空声学风力发电机噪声模型

摘要

The measurement of a 500 kW stall-regulated wind turbine is investigated. Microphones located relatively close to the wind turbine are used to measure its acoustic emission. The operational conditions of the turbine, such as wind speed, are simultaneously monitored. In parallel, a wind turbine rotor noise model is presented. It includes the main sources of aeroacoustic noise from wind turbines: turbulent inflow, trailing edge and stall noise. The noise measured by one microphone located directly downstream of the wind turbine is compared to the model predictions at the microphone location. A good qualitative agreement is found. When wind speed increases, the rotor noise model shows that at high frequencies thestall noise becomes dominant. It also shows that turbulent inflow noise is dominant at low frequencies for all wind speeds and that trailing edge noise is dominant at low wind speeds and at frequencies above 200 Hz.
机译:研究了500 kW失速调节式风力发电机的测量。相对靠近风力涡轮机的麦克风用于测量其声发射。涡轮的运行状况,例如风速,被同时监测。同时,提出了风力涡轮机转子噪声模型。它包括来自风力涡轮机的空气声噪声的主要来源:湍流,后缘和失速噪声。将直接位于风力涡轮机下游的一个麦克风测得的噪声与麦克风位置处的模型预测进行比较。找到了良好的定性协议。当风速增加时,转子噪声模型表明,在高频下,失速噪声占主导地位。它还表明,在所有风速下,湍流的流入噪声在低频时都是主要的,而在低风速和高于200 Hz的频率时,后缘噪声是主要的。

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