Ice Crystal Size Distributions in Tropical Mesoscale Convective Systems in the Vicinity of Darwin, Australia: Results from the HAIC/HIWC Campaign

IF 3 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of the Atmospheric Sciences Pub Date : 2023-06-23 DOI:10.1175/jas-d-22-0209.1
Peter Brechner, G. McFarquhar, A. Schwarzenboeck, A. Korolev
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引用次数: 1

Abstract

Total ice water content (IWC) derived from an isokinetic evaporator probe and ice crystal particle size distributions (PSDs) measured by a two-dimensional stereo probe and precipitation imaging probe installed on an aircraft during the 2014 European High Altitude Ice Crystals – North American High IWC field campaign (HAIC/HIWC) were used to characterize regions of high IWC consisting mainly of small ice crystals (HIWC_S) with IWC ≥ 1.0 g m−3 and median mass diameter (MMD) < 0.5 mm. A novel fitting routine developed to automatically determine whether a unimodal, bimodal, or trimodal gamma distribution best fits a PSD was used to compare characteristics of HIWC_S and other PSDs (e.g., multimodality, gamma fit parameters, etc.) for HIWC_S simulations. The variation of these characteristics and bulk properties (MMD, IWC) was regressed with temperature, IWC, and vertical velocity. HIWC_S regions were most pronounced in updraft cores. The three modes of the PSD reveal different dominant processes contributing to ice growth: nucleation for maximum dimension D < 0.15 mm, diffusion for 0.15 mm < D < 1.0 mm, and aggregation for D > 1.0 mm. The frequency of trimodal distributions increased with temperature. The volumes of equally plausible parameters derived in the phase space of gamma fit parameters increased with temperature for unimodal distributions and, for temperatures less than −27°C, for multimodal distributions. Bimodal distributions with 0.4 mm in the larger mode were most common in updraft cores and HIWC_S regions; bimodal distributions with 0.4 mm in the smaller mode were least common in convective cores.
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澳大利亚达尔文附近热带中尺度对流系统的冰晶尺寸分布:来自HAIC/HIWC运动的结果
在2014年欧洲高海拔冰晶-北美高IWC野外活动(HAIC/HIWC)期间,采用等温蒸发器探头测量的总冰水含量(IWC)和安装在飞机上的二维立体探头和降水成像探头测量的冰晶粒度分布(PSDs)来表征高IWC主要由小冰晶(HIWC_S)组成的区域,其中IWC≥1.0 g m−3,中位质量直径(MMD) < 0.5 mm。开发了一种新的拟合程序,用于自动确定单峰、双峰或三峰伽马分布是否最适合PSD,以比较HIWC_S和其他PSD的特征(例如,HIWC_S模拟的多峰、伽马拟合参数等)。这些特征和体积性质(MMD, IWC)随温度、IWC和垂直速度的变化进行了回归。HIWC_S区域在上升气流核中最为明显。PSD的三种模式揭示了促进冰生长的不同主导过程:最大尺寸D < 0.15 mm时成核,0.15 mm < D < 1.0 mm时扩散,D > 1.0 mm时聚集。三峰分布的频率随温度升高而增加。对于单峰分布,在伽马拟合参数的相空间中导出的同样似是而非的参数体积随着温度的升高而增加,对于温度低于- 27°C的多峰分布,同样似是而非的参数体积随着温度的升高而增加。0.4 mm的大模态双峰分布在上升岩心和HIWC_S区域最为常见;较小模态0.4 mm的双峰分布在对流核中最不常见。
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来源期刊
Journal of the Atmospheric Sciences
Journal of the Atmospheric Sciences 地学-气象与大气科学
CiteScore
0.20
自引率
22.60%
发文量
196
审稿时长
3-6 weeks
期刊介绍: The Journal of the Atmospheric Sciences (JAS) publishes basic research related to the physics, dynamics, and chemistry of the atmosphere of Earth and other planets, with emphasis on the quantitative and deductive aspects of the subject. The links provide detailed information for readers, authors, reviewers, and those who wish to submit a manuscript for consideration.
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