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Soaring energetics and glide performance in a moving atmosphere

机译:在动荡的气氛中飙升的能量和滑行性能

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摘要

Here, we analyse the energetics, performance and optimization of flight in a moving atmosphere. We begin by deriving a succinct expression describing all of the mechanical energy flows associated with gliding, dynamic soaring and thermal soaring, which we use to explore the optimization of gliding in an arbitrary wind. We use this optimization to revisit the classical theory of the glide polar, which we expand upon in two significant ways. First, we compare the predictions of the glide polar for different species under the various published models. Second, we derive a glide optimization chart that maps every combination of headwind and updraft speed to the unique combination of airspeed and inertial sink rate at which the aerodynamic cost of transport is expected to be minimized. With these theoretical tools in hand, we test their predictions using empirical data collected from a captive steppe eagle (Aquila nipalensis) carrying an inertial measurement unit, global positioning system, barometer and pitot tube. We show that the bird adjusts airspeed in relation to headwind speed as expected if it were seeking to minimize its aerodynamic cost of transport, but find only weak evidence to suggest that it adjusts airspeed similarly in response to updrafts during straight and interthermal glides.This article is part of the themed issue ‘Moving in a moving medium: new perspectives on flight’.
机译:在这里,我们分析了在不断变化的气氛中飞行的能量,性能和优化。我们首先得出一个简洁的表达式,描述与滑行,动态飙升和热飙升相关的所有机械能流,我们用它来探索在任意风中滑行的优化。我们使用这种优化方法重新审视滑翔极地的经典理论,并以两种重要方式对其进行了扩展。首先,我们在各种已发布的模型下比较了不同物种对滑行极地的预测。其次,我们得出了一个滑行优化图表,该图表将逆风和上升气流的每种组合映射到空速和惯性下沉速率的独特组合,从而可以最大程度地降低运输的空气动力学成本。有了这些理论工具,我们将使用从带有惯性测量单元,全球定位系统,气压计和皮托管的圈养草原鹰(Aquila nipalensis)收集的经验数据中测试其预测。我们显示,如果试图降低其空气动力学运输成本,该鸟类会按照预期将风速调整为与逆风速度有关,但仅发现微弱的证据表明该鸟类对直行和中温滑行时的上升气流做出了类似的调整。是“移动中的媒介:飞行的新视角”主题问题的一部分。

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