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Relating baseball seam height to carry distance

机译:将棒球接缝高度与携带距离相关

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Past work has shown large variation in the drag of baseballs. Little is known concerning the causes of variation in ball drag. Ball diameter, weight, seam height, surface roughness, and shape influence lift and drag, and therefore carry distance. The aim of this work was to quantify the effect of seam height and roundness on ball lift and drag, which, to our understanding, has never been done outside of a wind tunnel. A bespoke, non-contact, ball surface profiler, was used to measure ball radius, including seam height. The profiles were analyzed to describe ball roundness and seam height separately. Balls with three different seam heights were projected in an enclosed stadium 102-122 m (describing a typical fly ball). Redundant radar devices were used to measure launch angle, speed, and flight paths. High speed video was used to confirm launch angle and ball spin rate. Hit distance was verified with a physical tape measure. The ball's roundness influenced the effective height of a seam. Measurements of the non-seam area of a ball were necessary to characterize the seams of a ball. A strong correlation was observed between seam height and a ball's drag coefficient. Lift, however, was not sensitive to seam height or ball shape.
机译:过去的工作表明了棒球拖动的巨大变化。众所周知,关于球阻力变化的原因。球直径,重量,接缝高度,表面粗糙度和形状影响升力和拖动,因此携带距离。这项工作的目的是量化接缝高度和圆度对球升力的影响,并阻力,这对我们的理解来说从未在风洞之外做过。定制,非接触式球面分布器用于测量球半径,包括接缝高度。分析曲线以单独描述球圆度和接缝高度。在封闭体育场102-122米(描述典型的苍蝇)中投射了具有三个不同缝高的球。冗余雷达设备用于测量发射角,速度和飞行路径。高速视频用于确认发射角度和球旋转速率。用物理卷尺验证命中距离。球的圆度影响了接缝的有效高度。球的非接缝区域的测量是必须表征球的接缝。在接缝高度和球的拖动系数之间观察到强烈的相关性。然而,升降机对缝隙高度或球形不敏感。

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