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Application of a new scheme of cloud base droplet nucleation in a spectral (bin) microphysics cloud model: sensitivity to aerosol size distribution

机译:在光谱(箱)微观云模型中的云碱液液滴成核的应用:气溶胶尺寸分布的敏感性

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A new scheme of droplet nucleation at cloud base is implemented into the Hebrew University Cloud Model (HUCM) with spectral (bin) microphysics. In this scheme, supersaturation maximum Smax near cloud base is calculated using theoretical results according to which Smax?~?w3∕4Nd?1∕2, where w is the vertical velocity at cloud base and Nd is droplet concentration. Microphysical cloud structure obtained in the simulations of a midlatitude hail storm using the new scheme is compared with that obtained in the standard approach, in which droplet nucleation is calculated using supersaturation calculated in grid points. The simulations were performed with different concentrations of cloud condensational nuclei (CCN) and with different shapes of CCN size spectra. It is shown that the new nucleation scheme substantially improves the vertical profile of droplet concentration shifting the concentration maximum to cloud base. It is shown that the effect of the CCN size distribution shape on cloud microphysics is not less important than the effect of the total CCN concentration. It is shown that the smallest CCN with diameters less than about 0.015?μm have a substantial effect on mixed-phase and ice microphysics of deep convective clouds. Such CCN are not measured by standard CCN probes, which hinders understanding of cold microphysical processes.
机译:云群的液滴成核计划的新方案被实施到希伯来大学云模型(HUCM)中,光谱(箱)微物质。在该方案中,使用根据其Smaxα〜W3 /4ND≤1/ 2的理论结果计算云碱附近的超饱和最大Smax,其中W是云碱的垂直速度,并且Nd是液滴浓度。将使用新方案的中间冰雹风暴模拟中获得的微微物理云结构与标准方法中获得的,其中使用在网格点中计算的过饱和计算液滴成核。用不同浓度的云缩核(CCN)进行模拟,并具有不同的CCN尺寸光谱。结果表明,新的成核方案基本上改善了液滴浓度的垂直曲线,使浓度最大化为云碱。结果表明,CCN尺寸分布形状对云微妙的影响与总CCN浓度的效果相比不太重要。结果表明,直径小于约0.015Ωμm的最小CCN对深对流云的混合相和冰微佳药物具有显着影响。这种CCN不是通过标准CCN探针测量的,这阻碍了对冷微手术过程的理解。

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