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The dynamic behaviour of an arrow in wind

机译:风中箭头的动态行为

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摘要

Target archery competitions are conducted outdoors, exposed to the prevailing weather conditions. Competition takes place over long target distances and wind drift of the arrows is a significant cause of score loss. In this article, the dynamic behaviour of an arrow in free flight and wind drift are modelled, allowing for both the arrow initially aligning itself with the resultant airflow and the arrow flexing. The arrow has been modelled as an inextensible flexible beam, and the resulting partial differential equations solved using a finite difference method. Lift and drag for the various arrow components have been calculated using the local angle of attack for those components. It is shown that archers should use small diameter arrow shafts with a high density in order to minimise wind drift. Even for the best arrows, the drift for a 3-m/s side wind is greater than four score rings for a recurve bow at a target distance of 70 m with a 1220-mm diameter target face and nearly two score rings for a compound bow at a target distance of 50 m with an 800-mm diameter target face.
机译:目标射箭比赛在户外进行,暴露于普遍的天气条件。竞争在长期的目标距离和箭头的风漂移是一个重大成绩的原因。在本文中,建模了自由飞行和风漂流中箭头的动态行为,允许箭头最初与所得到的气流和箭头弯曲对齐。箭头已被建模为不明显的灵活光束,并且使用有限差分方法解决了所得到的部分微分方程。为这些组件的局部攻角计算了各种箭头组件的升力和拖动。结果表明,弓箭手应该使用具有高密度的小直径箭头轴,以便最小化风漂移。即使对于最佳箭头,对于3米/秒的侧向风的漂移也大于四个分数环,其目标距离为70米,直径为1220毫米的目标面,以及用于化合物的近两个得分环以50米的目标距离为50米,直径为800毫米的目标面。

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