Faculty of Health and Sports Sciences, University of Tsukuba, Tsukuba, 305-8574, Japan.
Sci Rep. 2021 May 5;11(1):9578. doi: 10.1038/s41598-021-89162-y.
Footballs are typically constructed with 32 panels. Recently, the number of panels has been successively reduced to 14, 8, and 6 panels, and official balls have been adopted with complex panel shapes and aerodynamics that differ from those of 32-panel balls. The official ball for the 2020-21 season of the English Premier League comprises just four panels with a complex panel shape and surface groove design; however, its aerodynamics have not yet been clarified. This study aims to clarify the aerodynamic characteristics (drag, side force, lift force, their deviations, and critical Reynolds number) of the new 4-panel ball (Flight 2020, Nike) in comparison to a 6-panel ball (Tsubasa 2020, Adidas) and conventional 32-panel ball (Pelada 2020, Molten) using a wind tunnel test, surface design measurement, and a simple 2D flight simulation. The results showed that Flight 2020 has greater surface roughness and smaller critical Reynolds number than Pelada 2020 and Tsubasa 2020, resulting to its marginally greater drag force in the supercritical region, and slightly smaller fluctuations of the side and lift forces. Furthermore, Flight with a symmetrical orientation exhibits a significantly higher drag coefficient in the supercritical region, suggesting its greater air resistance during flight under this condition.
足球通常由 32 块面板组成。最近,面板的数量已相继减少到 14、8 和 6 块,并且采用了具有复杂面板形状和空气动力学特性的官方球,这些特性与 32 块面板的球不同。2020-21 赛季的英超官方用球仅由四个面板组成,具有复杂的面板形状和表面凹槽设计;然而,其空气动力学特性尚未得到阐明。本研究旨在使用风洞测试、表面设计测量和简单的 2D 飞行模拟,比较新的 4 面板球(Flight 2020,Nike)与 6 面板球(Tsubasa 2020,Adidas)和传统的 32 面板球(Pelada 2020,Molten)的空气动力特性(阻力、侧向力、升力、它们的偏差和临界雷诺数)。结果表明,Flight 2020 的表面粗糙度大于 Pelada 2020 和 Tsubasa 2020,临界雷诺数小于它们,导致其在超临界区的阻力略有增加,侧向力和升力的波动略小。此外,Flight 2020 以对称方向呈现出明显更高的超临界区阻力系数,表明其在这种条件下飞行时的空气阻力更大。