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首页> 外文期刊>Journal of Applied Biomechanics >How Gate Setup and Turn Radii Influence Energy Dissipation in Slalom Ski Racing
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How Gate Setup and Turn Radii Influence Energy Dissipation in Slalom Ski Racing

机译:回转滑雪道的门设置和转弯半径如何影响能量耗散

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This study examined whether gate setup and turn radii influence energy dissipation in slalom skiing. 3D kinematical measurements were performed over two runs on the same slope in a WC slalom competition with two different gate setups: 1) open gates (OG) and 2) open gates with a delayed gate (DG). Using the arithmetic mean of the skis' turn radii (R_(AMS)) the slalom turns were divided into 1) initiation phase (R_(AMS) > 15m) and steering phase (R_(AMS) < 15m). The results show differences between OG and DG regarding: 1) the absolute center of gravity's (CG) velocity, 2) absolute acceleration, 3) CG turn radii and R_(AMS). 4) ground reaction forces (F) and 5) energy dissipation during skiing (allp< .05). In both gate setups the highest F and the highest energy dissipation were present in the steering phase, whereas the correlation between R_(AMS) and energy dissipation was low (OG: r = .364 and DG: r =. 214, both p< .001). In summary, compared with plain open gates, an additional delayed gate prolonged the turn radii and decreased energy dissipation in the beginning of the initiation phase, despite the fact that the relative frequency of occurrence of the highest energy dissipation was higher in DG.
机译:这项研究检查了闸板设置和转弯半径是否影响激流回旋滑雪的能量耗散。在WC激流回旋比赛中,在两个坡度相同的坡道上进行了两次运动,进行了3​​D运动学测量:1)打开的闸门(OG)和2)带有延迟的闸门(DG)的打开闸门。使用滑雪板转弯半径(R_(AMS))的算术平均值,将激流回旋弯分为1)初始阶段(R_(AMS)> 15m)和转向阶段(R_(AMS)<15m)。结果表明,OG和DG之间存在以下差异:1)绝对重心(CG)速度; 2)绝对加速度; 3)CG转弯半径和R_(AMS)。 4)地面反作用力(F)和5)滑雪过程中的能量耗散(allp <.05)。在两个门设置中,最高的F和最高的能量耗散都出现在转向阶段,而R_(AMS)和能量耗散之间的相关性很低(OG:r = .364和DG:r =。214,两者p < .001)。总而言之,与普通的敞开式闸门相比,附加的延迟闸门在初始阶段开始时延长了转弯半径,并降低了能量耗散,尽管DG中出现最高能量耗散的相对频率更高。

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