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Feeder-Cell Ingestion of Seeding Aerosol from Cloud Base Determined by Tracking Radar Chaff

机译:跟踪雷达箔条确定云基种子气溶胶的饲养细胞摄入

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摘要

Questions of delivery, transport, and dispersion of cloud seeding aerosol in a convective feeder cloud are addressed by using radar chaff as a surrogate for aerosol and tracking it with circular-polarization radar. In a case study, a line source of chaff was released by an aircraft at the roots of a growing cloud flanking and feeding into a thunderstorm line. The chaff was tracked as it dispersed in the boundary layer and rose more than 3 km from the cloud base at +14°C to levels cold enough to nucleate ice-forming seeding aerosols. Quantitative measures of the rates of loft and dispersion, and the volume filling and dilution were obtained. The measurements permit examination of the hypotheses and potential efficacy of cloud-base seeding to increase rain and suppress hail. Notably, the problem of delivery, transport, and dispersion of cloud seeding aerosol is much the same as the air quality question of the nature and effect of cloud venting of the boundary layer, and the findings here apply in that context as well.
机译:通过使用雷达谷壳作为气溶胶的替代物并使用圆极化雷达对其进行跟踪,解决了对流馈线云中的云种气溶胶的输送,运输和扩散问题。在一个案例研究中,一架飞机释放出一条谷壳线源,它从侧翼生长并进入雷暴线的不断增长的云层的根部释放出来。当谷壳分散在边界层中并在+ 14°C处从云层底部升起超过3 km到足以使成冰的播种气溶胶成核的水平时,对其进行了追踪。获得了膨松度和分散率以及体积填充和稀释的定量方法。这些测量结果可以检验假说和云基播种增加降雨并抑制冰雹的潜在功效。值得注意的是,种云气溶胶的输送,运输和扩散问题与边界层的云气排放的性质和影响的空气质量问题大体相同,此处的发现也适用于这种情况。

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