Synoptic and mesoscale aspects of exceptional fire weather during the New Year period 2019-20 in southeastern New South Wales, Australia

IF 3 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES
Paul Fox‐Hughes
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引用次数: 0

Abstract

Extreme fire weather and fire behavior occurred during the New Year’s Eve period 30-31 December 2019 in southeast New South Wales, Australia. Fire progressed rapidly during the late evening and early morning periods, and significant extreme pyrocumulonimbus behavior developed, sometimes repeatedly in the same area. This occurred within a broader context of an unprecedented fire season in eastern Australia. Several aspects of the synoptic and mesoscale meteorology are examined, to identify contributions to fire behavior during this period. The passage of a cold front through the region was a key factor in the event, but other processes contributed to the severity of fire weather. Additional important features during this period included the movement of a negatively tilted upper tropospheric trough, the interaction of the front with topography and the occurrence of low-level overnight jets and of horizontal boundary layer rolls in the vicinity of the fireground.
2019-20年新年期间澳大利亚新南威尔士州东南部异常火灾天气的天气和中尺度特征
2019年12月30日至31日除夕期间,澳大利亚新南威尔士州东南部发生了极端火灾天气和火灾行为。大火在傍晚和清晨迅速蔓延,并形成了显著的极端火山积雨云行为,有时在同一地区反复出现。这发生在澳大利亚东部前所未有的火灾季节的大背景下。对天气和中尺度气象学的几个方面进行了研究,以确定这一时期对火灾行为的贡献。冷锋穿过该地区是此次事件的一个关键因素,但其他过程也导致了火灾天气的严重性。这一时期的其他重要特征包括对流层上槽的负倾斜运动、锋面与地形的相互作用以及低空夜间喷流和火场附近水平边界层翻滚的发生。
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来源期刊
Weather and Forecasting
Weather and Forecasting 地学-气象与大气科学
CiteScore
5.20
自引率
17.20%
发文量
131
审稿时长
6-12 weeks
期刊介绍: Weather and Forecasting (WAF) (ISSN: 0882-8156; eISSN: 1520-0434) publishes research that is relevant to operational forecasting. This includes papers on significant weather events, forecasting techniques, forecast verification, model parameterizations, data assimilation, model ensembles, statistical postprocessing techniques, the transfer of research results to the forecasting community, and the societal use and value of forecasts. The scope of WAF includes research relevant to forecast lead times ranging from short-term “nowcasts” through seasonal time scales out to approximately two years.
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