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Azimuth orientation of crystal-cloud particles due to wind speed pulsations: mathematical model

机译:风速脉动引起的晶体云颗粒的方位角方向:数学模型

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We discuss the possibility that particles of a crystal cloud can take a preferred orientation with respect to wind direction under the action of aerodynamic forces in the atmosphere. It is shown theoretically that the preferred orientation can be caused by wind speed pulsations and by the forces applied to a particle falling due to gravity in the presence of wind speed gradient. The theoretical estimate of the parameter of the function of particle orientation distribution over azimuth angles well agrees with its experimental estimate from the backscattering phase matrices of cirrus clouds obtained from data of polarization lidar measurements.
机译:我们讨论了水晶云的颗粒可以在气氛中气动力的作用下相对于风向采取优选的取向。理论上,在理论上示出了优选的取向可以由风速脉动和由于在风速梯度存在下由于重力而施加到颗粒的力而引起的。方位角粒子角度函数函数参数的理论估计很好地同意其从偏振激光雷达测量数据的数据的反向散射相矩阵的实验估计。

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