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Innovative Concept for a Heavy-Load Aircraft Utilizing a Two-Dimensional Wing

机译:利用二维机翼的重载飞机的创新概念

摘要

Heavy-load aircraft of conventional wing-body-tail design have become very large. Excessive size of such aircraft may present problems in the manufacturing process. In addition, large wing spans may cause some difficulties in ground handling. Increasing lift loads on large span cantilever wings will also increase the strength of the wing tip vortex. The concept presented herein proposes a means for substantially increasing the lift load capability of an aircraft without increasing the overall length and span of the configuration. The concept has a rectangular wing with a relatively low span and a large chord to provide the area required for high lift. Large fuselages are attached at each wing tip to provide the volume required for heavy loading. The fuselages serve as endplates for the wing and should preclude tip flow so that two-dimensional flow might be established on the wing. Elimination of the wing tip flow should prevent the formation of a tip vortex and eliminate the tip vortex hazard to trailing aircraft. Exploratory wind tunnel tests of such an aircraft concept have been conducted. Lessons learned from these tests are discussed herein in an effort to determine the validity of the concept.
机译:传统的机翼尾翼设计的重载飞机已经变得非常大。这种飞机的尺寸过大可能在制造过程中出现问题。另外,大翼展可能会在地面处理中造成一些困难。大跨度悬臂翼上的升力载荷也会增加翼尖涡旋的强度。本文提出的概念提出了一种用于在不增加构造的总长度和跨度的情况下基本增加飞机的升力负载能力的装置。该概念具有一个矩形翼,其翼展相对较小,弦长较大,可提供高升力所需的面积。大机身安装在每个机翼末端,以提供重载所需的体积。机身用作机翼的端板,并应防止叶尖流动,以便在机翼上建立二维流动。消除机翼尖端流应防止尖端涡流的形成,并消除尖端涡流对尾随飞机的危害。已经进行了这种飞机概念的探索性风洞测试。本文讨论了从这些测试中学到的经验教训,以确定该概念的有效性。

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  • 作者

    Spearman M. Leroy;

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  • 年度 2007
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