-3s-1以上時(shí)分鐘雨量可達(dá)約2 mm,為本次短時(shí)強(qiáng)降水的組織特征。"/>
一次陣風(fēng)鋒碰并作用觸發(fā)短時(shí)強(qiáng)降水過程觀測(cè)分析
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廈門市氣象局創(chuàng)新團(tuán)隊(duì)“航空氣象與服務(wù)保障技術(shù)研究”資助


Observation and Analysis of a Flash Heavy Rain Event Caused by Collision of Gust Fronts
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    摘要:

    對(duì)足夠精細(xì)的觀測(cè)資料做詳盡的分析有助于澄清對(duì)流組織與增強(qiáng)的動(dòng)力機(jī)制。本文利用機(jī)場(chǎng)跑道兩端的分鐘雨量資料、常規(guī)觀測(cè)資料、加密自動(dòng)站、ERA5再分析和S波段雙偏振、X波段雙偏振相控陣?yán)走_(dá)資料,對(duì)2022年7月15日廈門機(jī)場(chǎng)出現(xiàn)的一次短時(shí)強(qiáng)降水天氣進(jìn)行了分析。結(jié)果表明:此次過程因陣風(fēng)鋒在傳播過程中與地面輻合線交叉碰并而觸發(fā)抬升,在500 hPa與850 hPa假相當(dāng)位溫差的負(fù)大值區(qū)和低層高溫高濕的環(huán)境下激發(fā)出新的對(duì)流,給廈門機(jī)場(chǎng)帶來罕見的短時(shí)強(qiáng)降水天氣,期間分鐘雨量最大達(dá)2.5 mm、跑道能見度降至400 m,兩者呈反相關(guān),但當(dāng)分鐘雨量大于1.6 mm時(shí)兩者反相關(guān)性減弱,能見度谷值則晚于雨量峰值出現(xiàn)。觀測(cè)分析表明,徑向速度的氣旋性切變與分鐘雨量的變化趨勢(shì)較為一致,兩者有較好的對(duì)應(yīng)關(guān)系。當(dāng)2~5 km高度存在氣旋性切變時(shí)雨量顯著增加,當(dāng)有兩個(gè)高度層的切變強(qiáng)度達(dá)到2×10-3s-1以上時(shí)分鐘雨量可達(dá)約2 mm,為本次短時(shí)強(qiáng)降水的組織特征。

    Abstract:

    Flash heavy rain and the resulting low visibility make it difficult for pilots to visually assess the runway clearly, severely impacting the take-off and landing of aircraft, thereby posing a threat to aviation operational safety. Moreover, the flight delays and diversions caused by this also result in significant losses for airlines and negatively affect socioeconomic benefits. Therefore, conducting comprehensive studies on flash heavy rain is crucial for ensuring aviation safety and enhancing flight punctuality. A thorough analysis of sufficiently detailed observational data is beneficial for clarifying the dynamic mechanisms of convective organisation and enhancement. On July 15, 2022, Xiamen Airport experienced a rare flash heavy rain event triggered by a weak background gust front. During this period, the precipitation intensity peaked at 2.5 mm per minute, and runway visibility rapidly decreased to 600 m, which is relatively uncommon at Xiamen Airport. To analyse this flash heavy rain event, this study utilises minute rainfall data from both ends of the runway, conventional observational data, densified automatic weather station data, ERA5 reanalysis, and S-band dual-polarisation and X-band dual-polarisation phased array radar data of Xiamen. The results of the study indicate that this event occurred under weak weather-scale forcing, where the gust front triggered uplift by intersecting and merging with the surface convergence line during propagation. In an environment characterised by negative large values of pseudo-equivalent potential temperature (θse500-850 hPa) and a warm and humid lower atmosphere, new convection was stimulated, resulting in the rare flash heavy rain at Xiamen Airport. During heavy rain, strong water vapour convergence appeared in the boundary layer at 1000 hPa. Minute rainfall on the runway showed an inverse correlation with visibility, but this correlation weakened when the minute rainfall exceeded 1.6 mm, and the visibility minimum lagged behind the rainfall peak by 7 minutes. Observational analysis reveals that the cyclonic shear of radial velocity was consistent with the trend of minute rainfall change. The peak minute rainfall at both ends of the runway corresponded to the peak cyclonic shear at a certain height layer, indicating a good correspondence between the two. When there was cyclonic shear in the radial velocity at heights of 2-5 km, rainfall significantly intensified. When the shear intensity at two height layers exceeded 2×10-3s-1, minute rainfall could reach approximately 2 mm (equivalent to an hourly rainfall of 120 mm), which emerged as a characteristic feature of this flash heavy rain event.

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蘇蕾,陳國(guó)清,吳福浪,梁秋楓,胡凱文.一次陣風(fēng)鋒碰并作用觸發(fā)短時(shí)強(qiáng)降水過程觀測(cè)分析[J].氣象科技,2024,52(3):380~391

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  • 收稿日期:2023-08-07
  • 定稿日期:2024-02-26
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  • 在線發(fā)布日期: 2024-06-25
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