首页> 外文期刊>The Journal of the Acoustical Society of America >Wind turbines and bat mortality: Doppler shift profiles and ultrasonic bat-like pulse reflection from moving turbine blades
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Wind turbines and bat mortality: Doppler shift profiles and ultrasonic bat-like pulse reflection from moving turbine blades

机译:风力涡轮机和蝙蝠死亡率:移动涡轮叶片产生的多普勒频移曲线和类似蝙蝠的超声脉冲

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摘要

Bat mortality resulting from actual or near-collision with operational wind turbine rotors is a phenomenon that is widespread but not well understood. Because bats rely on information contained in high-frequency echoes to determine the nature and movement of a target, it is important to consider how ultrasonic pulses similar to those used by bats for echolocation may be interacting with operational turbine rotor blades. By assessing the characteristics of reflected ultrasonic echoes, moving turbine blades operating under low wind speed conditions (<6 m s~(?1)) were found to produce distinct Doppler shift profiles at different angles to the rotor. Frequency shifts of up to ±700–800 Hz were produced, which may not be perceptible by some bat species. Monte Carlo simulation of bat-like sampling by echolocation revealed that over 50 rotor echoes could be required by species such as Pipistrellus pipistrellus for accurate interpretation of blade movement, which may not be achieved in the bat's approach time-window. In summary, it was found that echoes returned from moving blades had features which could render them attractive to bats or which might make it difficult for the bat to accurately detect and locate blades in sufficient time to avoid a collision.
机译:由于实际或接近与运行中的风力涡轮机转子碰撞而导致的蝙蝠死亡率是一种普遍存在的现象,但尚未广为人知。由于蝙蝠依靠高频回声中包含的信息来确定目标的性质和运动,因此重要的是考虑与蝙蝠用于回声定位的超声波脉冲如何与运行中的涡轮转子叶片相互作用。通过评估反射的超声波回波的特性,发现在低风速条件下(<6 m s〜(?1))运行的移动涡轮叶片会在与转子不同的角度下产生明显的多普勒频移曲线。产生了高达±700–800 Hz的频移,某些蝙蝠物种可能无法察觉。通过回声定位对蝙蝠样采样进行的蒙特卡洛模拟显示,诸如Pipistrellus pipistrellus之类的物种可能需要超过50个转子回声,才能准确地解释叶片的运动,这在蝙蝠的进场时间窗中可能无法实现。总而言之,发现从活动叶片返回的回波具有使它们对蝙蝠具有吸引力的特征,或者可能使蝙蝠难以在足够的时间内准确地检测和定位叶片以避免碰撞。

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