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Nano- and Microscale Particles in Vortex Motions in Earth's Atmosphere and Ionosphere

机译:地球大气层和电离层中涡旋运动中的纳米和微粒子

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Vortex motions in the atmosphere are shown to be closely connected with dynamics of the dust nano- and microscale particles. The mechanism by which nano- and microscale particles are transported from the troposphere into the lower stratosphere by synoptic-scale vortices, simulated by the soliton solutions to the Chamey-Obukhov equations (Rossby vortices), is described. Redistribution of dust particles in the ionosphere as a result of vortical motions is discussed. It is shown that excitation of acoustic-gravitational vortices at altitudes of 110-130 km as a result of development of acoustic-gravitational wave instability, associated with nonzero balance of heat fluxes, owing to solar radiation, water vapors condensation, infrared emission of the atmosphere, and thermal conductivity, leads to a substantial transportation of dust particles and their mixing at altitudes of 110-120 km. One of the ways of transportation of dust particles in the ionosphere is shown to be vertical flows (streamers), which are generated by dust vortices as a result of development of parametric instability.
机译:大气中的涡流运动被证明与粉尘纳米和微观粒子的动态密切相关。描述了纳米和微尺寸的机制通过跷跷板涡流从对流层传送到较低的平流层,通过孤子解决方案(Rossby Vortice)模拟。由于讨论了导致电离层中的粉尘颗粒的再分布。结果表明,由于太阳辐射,随着太阳辐射,水蒸汽冷凝,红外排放,引起了声重波不稳定的高度的高度引力波不稳定的升力,在110-130千米处发生激发。气氛和导热率,导致粉尘颗粒的大量运输及其在110-120公里的海拔地区混合。电离层中粉尘颗粒的运输方式之一被认为是垂直流动(飘带),其由于参数不稳定的发展而被灰尘涡流产生。

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