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Effective L/D: A Theoretical Approach to the Measurement of Aero-Structural Efficiency in Aircraft Design

机译:有效的L / D:一种在飞机设计中测量航空结构效率的理论方法

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There are many trade-offs in aircraft design that ultimately impact the overall performance and characteristics of the final design. One well recognized and well understood trade-off is that of wing weight and aerodynamic efficiency. Higher aerodynamic efficiency can be obtained by increasing wing span, usually at the expense of higher wing weight. The proper balance of these two competing factors depends on the objectives of the design. For example, aerodynamic efficiency is preeminent for sailplanes and long slender wings result. Although the wing weight-drag trade is universally recognized, aerodynamic efficiency and structural efficiency are not usually considered in combination. This paper discusses the concept of "aero-structural efficiency," which combines weight and drag characteristics. A metric to quantify aero-structural efficiency, termed effective L/D, is then derived and tested with various scenarios. Effective L/D is found to be a practical and robust means to simultaneously characterize aerodynamic and structural efficiency in the context of aircraft design. The primary value of the effective L/D metric is as a means to better communicate the combined system level impacts of drag and structural weight.
机译:飞机设计中存在许多折衷,这最终会影响最终设计的整体性能和特性。一种公认的众所周知的折衷方案是机翼重量和空气动力学效率。通常通过以增加机翼重量为代价,通过增加机翼跨度可以获得更高的空气动力学效率。这两个竞争因素的适当平衡取决于设计目标。例如,对于飞机而言,空气动力学效率至高无上,从而产生了细长的机翼。尽管机翼的重量拖曳贸易已得到普遍认可,但通常不将空气动力效率和结构效率结合起来考虑。本文讨论了“航空结构效率”的概念,该概念结合了重量和阻力特性。然后,得出了一种量化航空结构效率的指标,称为有效L / D,并在各种情况下进行了测试。发现有效的L / D是在飞机设计的背景下同时表征空气动力学和结构效率的实用而强大的手段。有效L / D度量的主要价值是更好地传达阻力和结构重量对系统级综合影响的一种手段。

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