三江源层状云系微物理结构特性的飞机观测研究
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1.①青海省人工影响天气办公室;2.②青海省气象灾害防御技术中心;3.青海省气象灾害防御技术中心

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青海省基础研究计划项目(2020-ZJ-711);第二次青藏高原综合科学考察研究(2019QZKK0104)


Exploring on Microphysical Structural Characteristics of Stratiform Clouds over the Sanjiangyuan National Nature Reserve with Airborne Observation
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Affiliation:

1.Weather Modification Office of Qinghai Province;2.Meteorological Disaster Prevention Technology Center in Qinghai Province;3.Meteorological Disaster Prevention Technology Center in Qinghai Provinc

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    摘要:

    利用在三江源飞机观测试验期间机载粒子测量系统(PMS)对一次春季典型层状云系进行分层垂直探测的资料,研究了云系的微物理结构特性。结果表明,春季典型层状云系由3层云层组成,卷层云(Cs)为冰云,分为上、下两层的高层云(As)为过冷混合态云,过冷水高值区位于下层高层云的中上至中下部位,在其中下部过冷水含量及云粒子浓度最大,具有较明显的地区特性。过冷水高值区的液态云粒子主要是中值直径在3.5μm-27.5μm范围内的云滴,30.5μm以上云粒子基本上为冰相。在下层高层云中上部的过冷水高值区有较明显的淞附增长现象,而中下部存在较明显的“冰晶效应”。在下层高层云过冷水高值区,过冷水含量比率的平均值达90.8±10.9%,且其中部至中下部位处(95.6±5.6%)明显高于中上部(79.8±12.1%),为人工增雨作业催化提供了有利条件。

    Abstract:

    In the field of artificial precipitation enhancement, aircraft observation is still the only effective ways to directly obtain the phase state of cloud particles. Because the liquid supercooled water content in the cloud is an important parameter to judge the microphysical structure characteristics of the cloud system, based on the layered vertical detection data of Par-ticle Measurement System (PMS) in the Sanjiangyuan National Nature Reserve, we analyzed the microphysical charac-teristics of a typical layered cloud system in this area in spring. The results show that: (1) the typical stratiform cloud system in spring cloud system is mainly composed of three layers, the uppermost Cs (cirrostratus) is ice-phase cloud, and the AS (altostratus) in upper layer (high-level cloud) and the lower layer are mixed clouds. Moreover, the high super-cooled water area is mainly distributed in the middle, upper and lower parts of the low-level As, where the cloud particle concentration and supercooled water content are the highest, with obvious regional characteristics. (2) The liquid cloud particles in the As layer are concentrated in the median diameter range of 3.5 ~ 27.5 μm, and the cloud particles larger than 30.5 μm are ice-phase. In the middle and upper part of the low As layer, there is an obvious growth phenomenon in the high supercooled water area, and there is obvious ice crystals effect in the middle and lower part. (3) In the low su-percooled water area, the average content ratio of supercooled water is 90.8±10.9%, and the middle to lower parts (95.6±5.6%) is significantly higher than the middle and upper parts (79.8±12.1%). The accurate understanding and judgment of the microphysical structure of the layered cloud system in Sanjiangyuan will provide a reliable observation basis for the catalysis of artificial precipitation enhancement in this area.

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  • 收稿日期:2024-02-12
  • 最后修改日期:2024-03-05
  • 录用日期:2024-03-05
  • 在线发布日期: 2024-03-06
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