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Convective Boundary Layer Clouds as Observed with Ground-Based Lidar at a Mid-Latitude Plain Site

机译:与地面普通普通网站的地面激光雷达观察到的对流边界层云

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摘要

A total of 3047 individual shallow cumuli were identified from 9 years of polarization lidar measurements (2011–2019) at Wuhan, China (30.5°N, 114.4°E). These fair-weather shallow cumuli occurred at the top edge of the convective boundary layer between April and October with the maximum occurrence in July over the 30°N plain site. They persisted mostly (>92%) for a short period of ~1–10 min and had a geometrical thickness of ~50–600 m (a mean of 209 ± 138 m). The majority (>94%) of the cloud bases of these cumuli were found to appear ~50–560 m (a mean of 308 ± 254 m) above the lifting condensation level (LCL). In this height range from the LCL to the cloud base, the lidar volume depolarization ratio (δδV) slightly decreased with increasing height, showing gradually increasing condensation in this sub-cloud region due to penetrative thermals. Most of the observed shallow cumuli (79%) formed under the conditions of high near-surface air temperature (>30 °C) and water vapor mixing ratio (>15 g kg−1).
机译:在武汉(2011-2019)(2011-2019)(30.5°N,114.4°E)中,共鉴定了3047个个体浅层水平。这些公平天气浅水泵发生在4月和10月至10月之间的对流边界层的顶部边缘,7月份在30°N普通站点上最大的发生。它们主要持续(> 92%)短时间〜1-10分钟,几何厚度为〜50-600米(平均值为209±138米)。发现这些Cumuli的大多数(> 94%)的云基碱基出现在提升冷凝水平(LCl)上方的〜50-560米(平均值为308±254米)。在从LCL到云基的该高度范围内,LIDAR体积去极化比率(ΔΔV)随着高度的增加而略微降低,由于穿透热的热量而逐渐增加该子云区域中的冷凝。大多数观察到的浅层(79%)在高近表面空气温度(> 30℃)和水蒸气混合比(> 15g kg-1)的条件下形成。

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