利用球囊探空仪结合中尺度对流复合体探测高空结冰状况

IF 2.8 3区 地球科学 Q3 METEOROLOGY & ATMOSPHERIC SCIENCES
Chuntao Liu, Laufey Jörgensdóttir, Paul Walter, G. Morris, J. Flynn, P. Kucera
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引用次数: 0

摘要

气球携带的无线电探空仪每天在全球协调的时间发射两次,以协助天气预报。每次飞行的数据收集通常在气球在20公里以上的高度爆炸时终止。本文重点介绍了气球在较低高度转弯的情况,并与气球上的结冰有关,这是航空安全感兴趣的天气条件。展示了四个这样的例子,气球在上升到高海拔并爆裂之前在3-6公里的高度之间振荡。这种振荡是由于气球上的冰堆积和融化,导致这种模式重复多次。对美国国家气象局五年期无线电探空仪数据和美国国家环境信息中心1980年至2020年的全球数据集的分析表明,全球0.18%的探测符合这些标准。这表明,对航空安全重要的天气条件在全球数据库中并不罕见。我们建议继续跟踪在低于通常预期的高度下降的测深,特别是考虑到这些上下振荡测深可以为可能导致航空安全问题的大量降水和结冰天气的天气预报提供有价值的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the detection of icing conditions at altitude in conjunction with mesoscale convective complexes using balloon sondes
Balloon-borne radiosondes are launched twice daily at coordinated times worldwide to assist with weather forecasting. Data collection from each flight is usually terminated when the balloon bursts at an altitude above 20 km. This paper highlights cases where the balloon's turnaround occurs at lower altitudes and is associated with ice formation on the balloon, a weather condition of interest to aviation safety. Four examples of such cases are shown, where the balloon oscillates between 3-6 km altitude before rising to high altitudes and bursting. This oscillation is due to the accumulation and melting of ice on the balloon, causing the pattern to repeat multiple times. An analysis of National Weather Service radiosonde data over a five-year period and a global data set from the National Centers for Environmental Information from 1980 to 2020 identified that 0.18% of soundings worldwide satisfied these criteria. This indicates that weather conditions important to aviation safety are not rare in the worldwide database. We recommend that soundings that show descent at altitudes lower than typically expected continue to be tracked, particularly given that these up-down oscillating soundings can provide valuable information for weather forecasting on days with significant precipitation and icing conditions that might lead to aviation safety concerns.
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来源期刊
Monthly Weather Review
Monthly Weather Review 地学-气象与大气科学
CiteScore
6.40
自引率
12.50%
发文量
186
审稿时长
3-6 weeks
期刊介绍: Monthly Weather Review (MWR) (ISSN: 0027-0644; eISSN: 1520-0493) publishes research relevant to the analysis and prediction of observed atmospheric circulations and physics, including technique development, data assimilation, model validation, and relevant case studies. This research includes numerical and data assimilation techniques that apply to the atmosphere and/or ocean environments. MWR also addresses phenomena having seasonal and subseasonal time scales.
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