Objective Identification Method of Cold-Front Precipitation in Winter Half Years over East Asia

IF 2.1 4区 地球科学 Q3 METEOROLOGY & ATMOSPHERIC SCIENCES Advances in Meteorology Pub Date : 2023-10-19 DOI:10.1155/2023/2361993
Shuya He, Yujing Qin, Chuhan Lu, Mengru Feng
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Abstract

Cold front is an important weather system that produces precipitation in East Asia. Under the background of global warming, extreme precipitation caused by cold fronts presents a significant increasing trend. Hence, it is very important to quantify the cold-front precipitation that may cause great damages. In this study, an objective identification method is proposed for cold-front precipitation, which can objectively identify the precipitation area affected by cold fronts. Then, the climatological characteristics and trends of cold-front precipitation over East Asia in the winter half years from 1989 to 2018 are investigated by using the ERA-5 reanalysis dataset. Based on the dataset of cold fronts and frontal zones, this method automatically distinguishes the precipitation area affected by cold fronts to quantitatively estimate cold-front precipitation. The results show that this identification method can well describe cold-front activities and associated precipitation during an extreme cold wave event that occurred in southern China in January 2016. In the past 30 years, cold fronts have significantly contributed to the precipitation in East Asia in winter half years. The areas with the maximum cold-front precipitation and maximum contribution rate of cold-front precipitation to total precipitation are located in the North Pacific storm track, cold-front precipitation exceeds 700 mm, and the contribution of cold-front precipitation to total precipitation exceeds 60%. In addition, the contribution rates of cold-front precipitation are also relatively large in the midlatitudes of East Asia, especially in North China and Northeast China, where cold-front precipitation accounts for 50%–60% of total precipitation. In East Asia, the total precipitation in autumn is greater than that in winter; however, cold-front precipitation and its contribution rate in winter are significantly more and larger than those in autumn. As the cold-frontal activity is more frequent and intense in winter, the rainfall in winter depends more on cold fronts. In the past 30 years, the trends of cold-front precipitation and total precipitation are consistent in most parts of East Asia, indicating that cold-front precipitation makes a great contribution to the trend of total precipitation in winter half years.
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目的:东亚地区冬半年冷锋降水识别方法
冷锋是东亚地区产生降水的重要天气系统。在全球变暖背景下,冷锋引起的极端降水呈显著增加趋势。因此,对可能造成较大危害的冷锋降水进行量化是十分重要的。本研究提出了一种冷锋降水的客观识别方法,可以客观地识别冷锋影响的降水区域。利用ERA-5再分析资料,分析了1989 - 2018年冬半年东亚冷锋降水的气候特征和变化趋势。该方法基于冷锋和锋面区数据集,自动区分受冷锋影响的降水区域,定量估算冷锋降水。结果表明,该识别方法能够较好地描述2016年1月发生在中国南方的一次极端寒潮事件中的冷锋活动和相关降水。近30年来,冷锋对东亚地区冬半年降水有显著贡献。冷锋降水最大和冷锋降水对总降水贡献率最大的区域位于北太平洋风暴路径,冷锋降水超过700 mm,冷锋降水对总降水的贡献率超过60%。此外,冷锋降水在东亚中纬度地区的贡献率也较大,特别是华北和东北地区,冷锋降水占总降水的50% ~ 60%。东亚地区秋季总降水量大于冬季;而冬季冷锋降水及其贡献率明显大于秋季。由于冬季冷锋活动更加频繁和强烈,冬季降雨更多地依赖于冷锋。近30年东亚大部分地区冷锋降水和总降水趋势一致,说明冷锋降水对冬半年总降水趋势的贡献较大。
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来源期刊
Advances in Meteorology
Advances in Meteorology 地学天文-气象与大气科学
CiteScore
5.30
自引率
3.40%
发文量
80
审稿时长
>12 weeks
期刊介绍: Advances in Meteorology is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of meteorology and climatology. Topics covered include, but are not limited to, forecasting techniques and applications, meteorological modeling, data analysis, atmospheric chemistry and physics, climate change, satellite meteorology, marine meteorology, and forest meteorology.
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