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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Charge separation in low-temperature ice cloud regions
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Charge separation in low-temperature ice cloud regions

机译:电荷分离在低温冰云地区

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摘要

New laboratory measurements of graupel pellet charging due to collision with ice particles at low temperature are presented. The experiments were carried out in the temperature range –37℃ to –47℃, with an impact velocity of 7 m s~(-1) and in the absence of supercooled liquid water. The graupel pellet was simulated with a previously rimed brass cylinder of 4 mm diameter, and the small ice particles were formed by natural freezing of supercooled water droplets at low temperature without seeding the cloud. The effective ice water content used in the experiments was between 0.25 and 0.33 gm~(-3). Cloud particle samples show small ice particles with diameters up to 24 μm. The results show that the sign of the charging current acquired by the graupel is predominantly negative, and its magnitude ranges from 0 to –150 pA; although there is a significant dispersion of data, a marked dependence on temperature is not observed. It is estimated that the magnitude of the charge transfer per collision is between 0.01 and 0.1 fC; the charging rate of a graupel pellet of 4 mm diameter then would be about 300 pC min~(-1). Based on this experimental evidence, we suggest that the charging mechanism associated with graupel–frozen droplet collision and separation may be relevant in clouds whose internal temperatures are substantially lower than –37℃ and could be the main generator for high-altitude lightning.
机译:新实验室的测量霰粒由于冰粒子碰撞在收费低温。进行了-37℃温度范围内-47℃,冲击速度的7 m s ~ (1)在缺乏水过冷液体。霰粒与先前模拟rim铜缸4毫米直径的,小冰粒子是由自然形成的冻结在低过冷的水滴温度没有播种的云。有效的冰水中使用的内容实验是在0.25和0.33之间通用~(3)。云粒子样本显示小冰晶直径24μm。充电电流通过的符号霰主要是消极的,它的范围从0到-150 pA级;有一个明显的分散的数据,对温度的依赖不是观察到。据估计,电荷的大小0.01和0.1之间传输每碰撞足球俱乐部;直径大约300 pC min ~(1)。基于这个实验证据,我们建议的充电机制联系在一起graupel-frozen液滴碰撞和分离可能相关的云内部温度大大低于-37℃并为高海拔可能是主发电机闪电。

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