Cao Lianzhong, Guo Youcai, Li Xiong, Chen Long, Wang Xin, Zhao Tianyu
Department of Kinesiology, Shenyang Sport University, Shenyang 110102, China.
Key Laboratory of Structural Dynamics of Liaoning Province, College of Sciences, Northeastern University, Shenyang 110819, China.
Biology (Basel). 2022 Sep 17;11(9):1362. doi: 10.3390/biology11091362.
The control and adjustment of in-flight attitudes are critical to enlarging the flight distance of ski jumping. As one of the most important gears, the skis provide sufficient lift and drag forces for the athletes, and thus their in-flight attitudes should be optimized to improve flight performance. Here, the lift-to-drag ratio of a ski jumping ski is optimized with/without a constraint of lift capacity. The ski attitude is defined by three Eulerian angles and the resulting aerodynamic characteristics are predicted by Kriging models, which are established based on computational fluid dynamics (CFD) data. The surrogated models are dynamically updated in the optimization process to ensure their accuracy. Our results find that the optimization of the lift-to-drag ratio should be constrained by a certain lift capacity to be more practical. The angle of attack of the ski dominates the optimal lift-to-drag ratio at different lift levels while the yaw and roll angles are almost independent of the constraint once the required lift coefficient surpasses 0.6. This thus suggests that the athletes should focus on the angle of attack when modifying the ski attitude in the flight, which may reduce the difficulties in their in-flight decision makings.
飞行姿态的控制与调整对于增加跳台滑雪的飞行距离至关重要。作为最重要的装备之一,滑雪板为运动员提供足够的升力和阻力,因此应优化其飞行姿态以提高飞行性能。在此,在有无升力能力约束的情况下对跳台滑雪板的升阻比进行优化。滑雪姿态由三个欧拉角定义,通过基于计算流体动力学(CFD)数据建立的克里金模型预测由此产生的空气动力学特性。在优化过程中对代理模型进行动态更新以确保其准确性。我们的结果发现,升阻比的优化应以一定的升力能力为约束,这样更具实际意义。在不同升力水平下,滑雪板的攻角主导着最佳升阻比,而一旦所需升力系数超过0.6,偏航角和滚转角几乎与约束无关。这表明运动员在飞行中调整滑雪姿态时应专注于攻角,这可能会降低他们飞行决策的难度。