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ACOUSTIC EMISSION MINIMIZATION IN A WIND TURBINE USING TRIP-WIRES AND OWL-WING-SERRATIONS

机译:风力涡轮机中的声发射最小化使用跳闸线和猫头鹰翼展

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Acoustic noises emitted from wind turbine blades should be reduced to an acceptable level for the uptake of wind energy in buildings and in the urban environment. This paper reports on effectiveness of, Owl-wing-serrations (OWS), two-dimensional trip-wires, and Active-noise-cancellation (ANC) in minimization of aerodynamic noises in a micro model turbine. The OWS and trip wires were attached to the blade leading edges and trailing edges in the wind turbine. The model was operated in the fan mode as a single row. Combined effects of OWS and ANC were also tested in a counter rotating double-row Fan. Air velocity (m/s), shaft-revolution (rpm); electric-power (W), amplitude of acoustic noise (dB) and its Centre frequency (CF in Hz) were measured at a reference location, for a number of spacing. Experimental results were plotted in the forms of dB vs. Tip Speed Ratio (TSR), dB vs. CF, and Efficiency or Coefficients of Performance COP vs. TSR. It was noticed that 1. In the single row operations, 3mm trip wires and OWS attached to blades have influenced on the emitted aerodynamic noises. OWS reduced dB and increased Cf more than the trip-wires. For example, at a fixed TSR, amplitude of noise (dB) decreased with trip wires or OWS with the lowest dB occurring with the OWS alone. At a fixed dB, Centre frequency (Cf) increased with the highest frequency Cf occurring with OWS alone. Minor changes in efficiency (COP) were noticed with the trip wires or Owl-wing serrations. It may suggest that larger eddies are converted into small turbulences with lower amplitudes and higher frequencies. 2. Active-noise-cancellation (ANC) in the double row operation affected acoustic noises as spacing/gap between the counter-rotating rows changed. At a fixed TSR, dB decreased in the double row operations in comparison with the single-row operations, the reduction in dB increased at higher TSR. At a fixed dB, Centre frequency (Cf) increased by 100% with the highest frequency Cf occurring at the spacing of 50mm. Efficiency or COP decreased by 50% when ANC was implemented with a minor change due to spacing between rows. 3. Combined effects of OWS and ANC were moderate comparing to ANC alone, reducing both dB and COP by around 35% while doubling Cf as compared to the single raw fan conditions. The minimum dB and maximum Cf occurred at the gap/spacing of 50mm. No significant change was noticed at COP with combined OWS and ANC.
机译:从风力涡轮机叶片发出的声噪声应减少到建筑物和城市环境中的风能摄取的可接受水平。本文在微型模型涡轮机中的最小化空气动力学噪声中,报告了OWL-WING-SERRATION(OWS),二维跳闸线和主动噪声消除(ANC)的有效性。 OWS和跳闸导线连接到风力涡轮机中的刀片前缘和后缘。该模型以风扇模式操作为单行。 OWS和ANC的组合效果也在计数器旋转双排风扇中进行了测试。空气速度(m / s),轴旋转(rpm);在参考位置测量电力(W),声噪声(DB)的幅度(DB)及其中心频率(CF在Hz中),用于多个间隔。实验结果以DB与尖端速比(TSR),DB与CF的形式绘制,效率或系数的性能COP与TSR。注意到,1.在单行操作中,3mm跳闸线和附着在刀片上的OWS对发出的空气动力学噪声影响。 OWS减少了DB,比行程线增加了CF。例如,在固定TSR处,噪声幅度(DB)随着跳线或OWS而减小,其中单独的OWS发生最低的DB。在固定的DB处,中心频率(CF)随着与OWS发生的最高频率CF增加。跳闸线或猫头鹰翼锯齿注意到效率的微小变化(COP)。它可能表明,较大的漩涡被转换成具有较低幅度和更高频率的小湍流。 2.双行操作中的主动噪声消除(ANC)影响声噪声作为反向旋转行之间的间距/间隙变化。在固定TSR,与单行操作相比,DB在双行操作中减少,DB的减少在较高的TSR时增加。在固定的DB,中心频率(CF)增加100%,最高频率CF在间距为50mm。当ANC实施时,效率或警察减少了50%,因为在行之间的间距,随着行的间隔而进行了微小的变化。 3.与ANC单独相比,OWS和ANC的组合效果与ANC相比,将DB和COP减少约35%,同时与单一原始风扇条件相比加倍CF。最小DB和最大CF在50mm的间隙/间距发生。 COP与OWS和ANC组合没有明显的变化。

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