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Quantifying the impact of dust on heterogeneous ice generation in midlevel supercooled stratiform clouds

机译:量化尘埃对中层过冷层状云非均质冰生成的影响

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[1] Dust aerosols have been regarded as effective ice nuclei(IN), but large uncertainties regarding their efficiencies remain. Here, four years of collocated CALIPSO and CloudSat measurements are used to quantify the impact of dust on heterogeneous ice generation in midlevel supercooled stratiform clouds(MSSCs)over the ‘dust belt’. The results show that the dusty MSSCs have an up to 20% higher mixed-phase cloud occurrence, up to 8 dBZ higher mean maximum Z_e(Z_(e_)max), and up to 11.5 g/m~2 higher ice water path(IWP)than similar MSSCs under background aerosol conditions. Assuming similar ice growth and fallout history in similar MSSCs, the significant differences in Z_(e_)max between dusty and non-dusty MSSCs reflect ice particle number concentration differences. Therefore, observed Z_(e_)max differences indicate that dust could enhance ice particle concentration in MSSCs by a factor of 2 to 6 at temperatures colder than -12°C. The enhancements are strongly dependent on the cloud top temperature, large dust particle concentration and chemical compositions. These results imply an important role of dust particles in modifying mixed-phase cloud properties globally. Citation: Zhang, D., Z. Wang, A. Heymsfield, J. Fan, D. Liu, and M. Zhao (2012), Quantifying the impact of dust on heterogeneous ice generation in midlevel supercooled stratiform clouds, Geophys. Res. Lett., 39, L18805, doi:10.1029/2012GL052831.
机译:[1]尘埃气溶胶被认为是有效的冰核(IN),但是关于其效率的不确定性仍然很大。在这里,四年的CALIPSO和CloudSat并置测量被用于量化“尘埃带”上尘埃对中空过冷层状云(MSSC)中非均质冰生成的影响。结果表明,尘土飞扬的MSSC的混合相云发生率高出20%,平均最大Z_e(Z_(e_)max)高出8 dBZ,冰水路径高出11.5 g / m〜2( IWP)比背景气溶胶条件下的类似MSSC更高。假设类似MSSC中的冰生长和沉降历史相似,那么多尘和非尘土MSSC之间Z_(e_)max的显着差异反映了冰粒数量浓度差异。因此,观察到的Z_(e_)max差异表明,在低于-12°C的温度下,灰尘可以使MSSC中的冰粒浓度增加2到6倍。增强很大程度上取决于云顶温度,较大的尘埃颗粒浓度和化学成分。这些结果暗示了尘粒在整体上改变混合相云特性方面的重要作用。引文:张大中,王中,A.海姆斯菲尔德,J.范,刘大中,和M.赵(2012),量化尘埃对中层过冷层状云非均质冰生成的影响,Geophys。 Res。 Lett。,39,L18805,doi:10.1029 / 2012GL052831。

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