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Shape Optimization of 'Pumpkin' Balloons

机译:“南瓜”气球的形状优化

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This paper is concerned with the optimization of the cutting pattern for the lobes of pumpkin-shaped balloon structures. Pumpkin balloons, currently developed for the NASA Ultra-Long Duration Balloon (ULDB), consist of stiff meridional tendons that constrain a thin plastic film. The present study shows that the maximum stability of pumpkin balloons is reached if their surface area is minimized under a given stress constraint. This results in fully stressed designs that in some cases have a total surface area smaller than a smooth isotensoid surface, without increasing the maximum stresses in the film. The resulting designs are likely to avoid the shape instabilities that have been observed in balloons with a high surface area to volume ratio.
机译:本文涉及南瓜形气球结构叶片的优化优化。南瓜气球,目前为NASA超长持续时间气球(ULDB)开发,由僵硬的子午肌腱构成约束薄塑料薄膜。本研究表明,如果在给定的应力约束下它们的表面积最小化,则达到南瓜滚珠槽的最大稳定性。这导致完全压力的设计,在一些情况下,总表面积小于光滑的体瓣素表面,而不增加膜中的最大应力。所得到的设计可能避免在具有高表面积的气球中观察到的形状不稳定性。

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