首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Flight paths of seabirds soaring over the ocean surface enable measurement of fine-scale wind speed and direction
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Flight paths of seabirds soaring over the ocean surface enable measurement of fine-scale wind speed and direction

机译:海鸟飞越海洋表面的飞行路径可以测量细尺度的风速和风向

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摘要

Ocean surface winds are an essential factor in understanding the physical interactions between the atmosphere and the ocean. Surface winds measured by satellite scatterometers and buoys cover most of the global ocean; however, there are still spatial and temporal gaps and finer-scale variations of wind that may be overlooked, particularly in coastal areas. Here, we show that flight paths of soaring seabirds can be used to estimate fine-scale (every 5 min, ∼5 km) ocean surface winds. Fine-scale global positioning system (GPS) positional data revealed that soaring seabirds flew tortuously and ground speed fluctuated presumably due to tail winds and head winds. Taking advantage of the ground speed difference in relation to flight direction, we reliably estimated wind speed and direction experienced by the birds. These bird-based wind velocities were significantly correlated with wind velocities estimated by satellite-borne scatterometers. Furthermore, extensive travel distances and flight duration of the seabirds enabled a wide range of high-resolution wind observations, especially in coastal areas. Our study suggests that seabirds provide a platform from which to measure ocean surface winds, potentially complementing conventional wind measurements by covering spatial and temporal measurement gaps.
机译:海洋表面风是了解大气与海洋之间物理相互作用的重要因素。由卫星散射仪和浮标测量的地表风覆盖了全球大部分海洋;但是,仍然存在时空上的差距以及风的更小尺度变化,这些变化可能被忽略,特别是在沿海地区。在这里,我们表明,高飞海鸟的飞行路径可用于估计精细尺度(每5分钟,约5公里)的海面风。精细的全球定位系统(GPS)位置数据显示,高飞的海鸟曲折地飞行,地速可能是由于尾风和逆风而波动的。利用相对于飞行方向的地速差,我们可靠地估算了鸟类的风速和风向。这些基于鸟类的风速与通过卫星散射仪估算的风速显着相关。此外,海鸟广泛的行进距离和飞行时间使人们能够进行各种高分辨率的风观测,尤其是在沿海地区。我们的研究表明,海鸟提供了一个测量海洋表面风的平台,可以通过覆盖空间和时间测量间隙来补充传统的风测量。

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