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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >High lift function of the pteroid bone and forewing of pterosaurs.
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High lift function of the pteroid bone and forewing of pterosaurs.

机译:翼骨的高提升功能和翼龙的前伸。

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The pteroid bone is a rod-like element found only in pterosaurs, the flying reptiles of the Mesozoic. It articulated at the wrist, and supported a membranous forewing in front of the inner part of the wing spar. The function of this bone, particularly its orientation, has been much debated. It is widely believed that it pointed towards the body, and that the forewing was relatively narrow. An alternative hypothesis states that it was directed forwards during flight, resulting in a much broader forewing that acted as a leading edge flap. We tested scale models in a wind tunnel to determine the aerodynamic consequences of these conflicting hypotheses, and found that performance is greatly improved if the pteroid is directed forwards: the lift: drag ratios are superior and the maximum lift is exceptionally high in comparison with conventional aerofoils. This high lift capability may have enabled even the largest pterosaurs to take off and land without difficulty.
机译:翼骨是仅在翼龙(中生代的飞行爬行动物)中发现的棒状元素。它在腕部关节运动,并在翼梁内部的前面支撑着一个膜状的前爪。这种骨头的功能,特别是它的方向,已经引起了很多争论。人们普遍认为它指向身体,并且前爪相对狭窄。另一种假设是,它在飞行过程中被引导向前,从而产生了更宽广的前翼,从而起到了前缘襟翼的作用。我们在风洞中测试了比例模型以确定这些矛盾的假设的空气动力学后果,发现如果将翼翼指向前方,则性能会大大提高:与常规相比,升力:风阻比优越,最大升力极高机翼。这种高举升能力甚至可以使最大的翼龙毫不费力地起飞和降落。

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