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首页> 外文期刊>Journal of Applied Meteorology and Climatology >Influence of Humidified Aerosol on Lidar Depolarization Measurements below Ice-Precipitating Arctic Stratus
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Influence of Humidified Aerosol on Lidar Depolarization Measurements below Ice-Precipitating Arctic Stratus

机译:加湿气溶胶对析冰北极地层以下激光雷达去极化测量的影响

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Lidar measurements obtained during the Surface Heat Budget of the Arctic Ocean (SHEB A) experiment under a mixed-phase stratus cloud that was lightly precipitating ice show a range of surprisingly low depolarization ratios (4%-23%), despite an absenceof cloud droplets there. These depolarization ratios are much lower than the range of theoretical values obtained for various ice habits. The depolarization ratios correlate well with radar reflectivity, suggesting that the variation in depolarization ratios results from variations in ice water content, rather than variation in ice habits or orientation. By calculating lidar depolarization based on (i) large-eddy simulations and (ii) in situ ice size distribution measurements, it is shown that the presence of humidified aerosol particles in addition to the ice precipitation can explain the distribution and vertical profile of the observed depolarization ratios, although uncertainties related to the aerosol size distributions are substantial. These calculations show that humidified aerosol must be taken into account when interpreting lidar depolarization measurements for cloud and precipitation phase discrimination or ice habit classification, at least under conditions similar to those observed duringSHEBA.
机译:在北冰洋表面热收支(SHEB A)实验中,在轻微沉淀冰的混合相层云下进行的激光雷达测量显示,尽管没有云滴,但极化范围极低(4%-23%)那里。这些去极化比远低于各种冰习惯所获得的理论值范围。去极化率与雷达反射率密切相关,这表明去极化率的变化是由冰水含量的变化而不是由冰习性或方位的变化引起的。通过基于(i)大涡模拟和(ii)原位冰尺寸分布测量来计算激光雷达的去极化,结果表明,除冰降水外,增湿气溶胶颗粒的存在还可以解释观测到的分布和垂直剖面除极化率,尽管与气溶胶尺寸分布有关的不确定性很大。这些计算表明,至少在类似于SHEBA期间所观察到的条件下,解释激光雷达的去极化测量以进行云和降水相鉴别或冰习惯分类时,必须考虑加湿的气溶胶。

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