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Minimum shear wind strength required for dynamic soaring of albatrosses

机译:信天翁动态腾飞所需的最小剪切风强度

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摘要

The transfer of energy from the moving air in the shear wind above the sea surface to a bird is considered as an energy source for dynamic soaring, with the goal to determine the minimum shear wind strength required for the dynamic soaring of albatrosses. Focus is on energy-neutral trajectories, implying that the energy gain from the moving air is just sufficient to compensate for the energy loss due to drag for a dynamic soaring cycle. A mathematical optimization method is used for computing minimum shear wind energy-neutral trajectories, using a realistic flight mechanics model for the soaring of albatrosses. Thus, the minimum shear wind strength required for dynamic soaring is determined. The minimum shear wind strength is of a magnitude that often exists or is exceeded in areas in which albatrosses are found. This result holds for two control cases dealt with, one of which shows a freely selectable and the other a constant lift coefficient characteristic. The mechanism of energy transfer from the shear flow to the bird is considered, and it is shown that there is a significant energy gain in the upper curve and a loss in the lower curve. As a result, the upper curve can be qualified as the characteristic flight phase of dynamic soaring to achieve an energy gain.
机译:能量从海面以上的剪切风中的运动空气到鸟类的传递被认为是动态腾飞的能源,目的是确定信天翁动态腾飞所需的最小剪切风强度。重点放在能量中性轨迹上,这意味着从移动的空气中获取的能量仅足以补偿由于动态飙升周期的阻力而导致的能量损失。使用一种数学上的优化方法来计算最小的风能能量中性轨迹,并使用一个逼真的信天翁飞翔的飞行力学模型。因此,确定了动态腾飞所需的最小剪切风强度。最小剪切风强度在发现信天翁的地区经常存在或超过的强度。该结果适用于处理的两种控制情况,其中一种显示自由选择,另一种显示恒定的升力系数特性。考虑了从剪切流到鸟类的能量转移机理,结果表明,上部曲线有明显的能量增益,下部曲线有损耗。结果,上部曲线可被视为动态腾飞的典型飞行阶段,以实现能量增益。

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  • 来源
    《IBIS》 |2005年第1期|共10页
  • 作者

    Sachs Gottfried;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 动物学;
  • 关键词

  • 入库时间 2022-08-18 10:24:47

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