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首页> 外文期刊>Journal of Fluids and Structures >Admittance function to evaluate aerodynamic loads on vehicles: Experimental data and numerical model
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Admittance function to evaluate aerodynamic loads on vehicles: Experimental data and numerical model

机译:评估车辆空气动力负荷的导纳函数:实验数据和数值模型

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摘要

When a moving vehicle is subjected to cross wind, the aerodynamic loads acting on the vehicle itself depend not only on the mean value of the relative wind-vehicle velocity but also on the statistical properties of the wind, i.e. the turbulence intensity - which represents its variation in the time domain - and the integral length scale - linked to the space distribution of the wind field. This paper describes an algorithm, used to define non-stationary aerodynamic forces, which allows to account for the spatial correlation of the wind through the aerodynamic admittance function. In particular, a numerical model for the aerodynamic admittance function is developed and verified by means of comparison with experimental data. The model can be adopted for both the lateral force and rolling moment components but not for the vertical force. Finally, it will be shown how admittance depends on the geometrical characteristics of the vehicle (length and height) and on the properties of the wind, through the integral length scale.
机译:当行驶中的车辆遭受侧风时,作用在车辆本身上的空气动力学载荷不仅取决于相对风速的平均值,还取决于风的统计特性,即湍流强度-代表风速时域的变化-和积分长度标度-与风场的空间分布有关。本文介绍了一种用于定义非平稳空气动力的算法,该算法允许通过空气动力导纳函数考虑风的空间相关性。特别地,通过与实验数据的比较,开发并验证了用于空气动力学导纳函数的数值模型。该模型既可以用于侧向力也可以用于侧倾力矩分量,但不能用于垂直力。最后,将通过积分长度刻度显示导纳如何取决于车辆的几何特性(长度和高度)以及风的特性。

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