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Anomalous Circulation Patterns in Association with Summertime Regional Daily Precipitation Extremes over Northeast China

机译:与夏季地区日常降水极值联合的异常循环模式极端

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Based on the NCEP/NCAR daily reanalysis product, NOAA monthly sea surface temperature (SST) dataset, and daily precipitation data collected at observational stations provided by Meteorological Information Center of China Meteorological Administration, the present study analyzes characteristic circulation anomalies conducive to regional extreme daily precipitation in the summer over Northeast China. Results indicate that 26 extreme precipitation events occurred during the 36-year period of 1979–2014. The precipitation threshold for the 99th percentile is 22.2?mm/d, and the maximum extreme daily precipitation occurred in Liaoning Province. When extreme precipitation occurs, Northeast China is located to the southeast of an anomalous cyclonic circulation and northwest of an anomalous anticyclonic circulation, where a strong convergence zone is formed in the lower troposphere. The low-level convergence and upper-level divergence as well as the baroclinic circulation structure are favorable for the development of extreme daily precipitation. Meanwhile, there exist two symmetrical meridional circulations to the north and south of Northeast China. The two meridional circulations share the same ascending branch, which is conducive to the occurrence of precipitation. Located in the strong convergence zone to the southeast of the abnormal cyclonic circulation and northwest of the abnormal anticyclonic circulation, huge amounts of water vapor from the Inner Mongolia, Russia, the Japan Sea, and the mid-high latitudes of the Northwest Pacific are transported to Northeast China, providing sufficient water vapor condition for the occurrence of extreme daily precipitation in this region. In addition, daily extreme precipitation in Northeast China is also closely related to the accumulation and convergence of disturbance energy in Northeast China. It may also be related to the abnormal SST distribution that is high in the north and low in the south. Corresponding to extreme daily precipitation, SST anomaly in the Pacific Ocean is roughly characterized by the feature of “positive-north and negative- south” with the equator as the boundary.
机译:基于NCEP / NCAR每日重新分析产品,NOAA每月海面温度(SST)数据集和中国气象信息中心提供的观察站收集的日常降水数据,本研究分析了每天有利于区域极端的特征循环异常在中国东北夏天降水。结果表明,1979 - 2014年36年期间发生了26个极端降水事件。第99百分位数的降水阈值是22.2毫米?mm / d,辽宁省最大的极端日降水量。当出现极端降水时,东北地区位于一个异常的气旋循环和西北部的异常反循环的东南部,在较低的对流层中形成了强大的收敛区。低级收敛和高级分歧以及曲金循环结构是有利于极端日常降水的发展。与此同时,中国东北北部和南部存在两个对称的经络循环。这两个优势循环共享相同的上升分支,这有利于降水的发生。位于强大的收敛区到东南的异常循环和西北异常的反循环,来自内蒙古,俄罗斯,日本大海的大量水蒸气,以及西北太平洋的中高纬度都被运送东北地区,为该地区提供极端日降水的出现足够的水蒸气条件。此外,东北地区的每日极端降水也与中国东北地区扰动能源的积累和融合密切相关。它也可能与南方北部高的异常SST分布有关。对应于极端日降水,太平洋中的SST异常大致以“积极 - 北极和负 - 南”为特征,与赤道为边界。

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