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Low Frequency Noise from Wind Turbines Mechanisms of Generation and its Modelling

机译:风力发电机组的低频噪声产生及其建模

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The objective of the present paper is to present an overview of LFN characteristics of modern MW turbines' based on numerical simulations, Typical sizes of modern turbines are from 1-3 MW nominal generator power and a rotor diameter ranging from 80-100 m but larger prototypes up to 5 MW and with a rotor diameter of 126 m have how been instated. The numerical investigations comprise the common upwind rotor concept but also the turbines with a downwind rotor are considered. The reason to include the downwind rotor concept is that this turbine design has some advantages which could lead to future competitive designs compared with the upwind three-bladed rotor. The simulation package comprises an aeroelastic time simulation code HAWC2 and an acoustic low frequency noise (LFN) prediction model. Computed time traces of rotor thrust and rotor torque from the aeroelastic model are input to the acoustic model which computes the sound pressure level (SPL) at a specified distance from the turbine. The influences on LFN on a number of turbine design parameters are investigated and the position of the rotor relative to the tower (upwind or downwind rotor) is found to be the most important design parameter. For an upwind rotor the LFN levels are so low that it should not cause annoyance of neighbouring people. Important turbine design parameters with strong influence on LFN are the blade tip speed and the distance between rotor and tower.
机译:本文的目的是基于数值模拟,概述现代中型风力发电机的LFN特性,现代型涡轮的典型尺寸为1-3 MW标称发电机功率,转子直径为80-100 m,但更大原型机的功率高达5 MW,转子直径为126 m。数值研究包括常见的逆风转子概念,但也考虑了具有顺风转子的涡轮机。之所以要包括顺风转子概念,是因为与逆风三叶转子相比,这种涡轮机设计具有一些优势,可以带来未来的竞争性设计。该模拟程序包包括一个气动弹性时间模拟代码HAWC2和一个低频噪声(LFN)预测模型。将来自气动弹性模型的转子推力和转子转矩的计算时间轨迹输入到声学模型,该声学模型计算距涡轮机指定距离的声压级(SPL)。研究了LFN对许多涡轮机设计参数的影响,并且发现转子相对于塔筒的位置(逆风或逆风转子)是最重要的设计参数。对于上风向转子,LFN水平很低,以至于不会引起邻居的烦恼。影响LFN的重要涡轮机设计参数是叶尖速度和转子与塔架之间的距离。

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