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首页> 外文期刊>Medicine and science in sports and exercise >A comprehensive skiing mechanics theory with implications to snowboard optimization.
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A comprehensive skiing mechanics theory with implications to snowboard optimization.

机译:涉及滑雪板优化的综合滑雪力学理论。

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PURPOSE: Lift mechanics of downhill skiing or snowboarding is a new theory developed by the corresponding author and colleagues in 2006 and published in Medicine & Science in Sports & Exercise(R). This theory, hereafter called the Wu-Weinbaum theory, captures the lift contributions due to both the transiently trapped air inside a snow layer and the solid phase (snow crystals) for the first time and examines the stability and control of skiing/snowboarding. However, it has two major shortcomings. First, it only predicts a single equilibrium position for a given gliding condition because of its limitations on the numerical simulation. Second, it is only applicable to rectangular boards. In the current study, we shall treat these limitations by improving the numerical methods as well as extending the Wu-Weinbaum theory to more complex planar shapes. METHODS: A modified mathematical model is developed where a width factor, f(x), which characterizes the variation of width from the leading to the trailing edge of a ski/snowboard, is introduced. RESULTS: We have performed a thorough reexamination of the force and moment balance on a rectangular board on the basis of an improved numerical scheme and obtained multiple equilibrium positions for a skier or snowboarder gliding over a compressed snow layer at a certain speed. Furthermore, the performance of a commercial ski/snowboard with a specified shape was studied on the basis of our revised model, which revealed different pore pressure distribution underneath the sliding surface compared with a rectangular board. CONCLUSIONS: This study, along with the Wu-Weinbaum theory, has laid the foundation for the optimization of a ski/snowboard from a lift generation point of view.
机译:目的:下坡滑雪或单板滑雪的举升力学是一种新的理论,由相应的作者和同事于2006年提出,并发表在《医学与科学》杂志上。该理论在下文中被称为Wu-Weinbaum理论,它首次捕获了由于雪层内部的瞬时空气和固相(雪晶)而引起的升力贡献,并研究了滑雪/单板滑雪的稳定性和控制。但是,它有两个主要缺点。首先,由于其对数值模拟的限制,它仅针对给定的滑行条件预测单个平衡位置。其次,它仅适用于矩形板。在当前的研究中,我们将通过改进数值方法以及将Wu-Weinbaum理论扩展到更复杂的平面形状来处理这些限制。方法:开发了一种改进的数学模型,其中引入了宽度因子f(x),该因子表征了从滑雪板/雪橇的前缘到后缘的宽度变化。结果:在改进的数值方案的基础上,我们对矩形板上的力和力矩平衡进行了彻底的重新检查,并获得了滑雪者或滑雪者以一定速度滑过压缩雪层的多个平衡位置。此外,在我们修改后的模型的基础上,研究了具有特定形状的商用滑雪板/雪板的性能,该模型显示出与矩形板相比,滑动表面下方的孔隙压力分布不同。结论:这项研究与Wu-Weinbaum理论一起,为从举升产生的角度优化滑雪板/雪板奠定了基础。

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