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Quasi-Biweekly Oscillation of Northeast China Cold Vortex Frequency in the Warm Season
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作者 Zhongda LIN Cholaw BUEH +3 位作者 Shangfeng LI Zongting GAO Li TANG Yi LIAN 《Advances in Atmospheric Sciences》 2025年第7期1301-1315,共15页
The Northeast China cold vortex(NCCV)is the most important midlatitude synoptic system for weather and climate anomalies in Northeast China in the warm season.Many previous studies have focused on its synoptic and cli... The Northeast China cold vortex(NCCV)is the most important midlatitude synoptic system for weather and climate anomalies in Northeast China in the warm season.Many previous studies have focused on its synoptic and climatic variability.However,little is known about the variability of the NCCV on subseasonal timescales.In this study,we investigate the subseasonal variability of the NCCV in the warm season(May to August)and its impact based on the NCEP–NCAR reanalysis dataset and observational climate data from 1981 to 2020.Results show that the NCCV frequency exhibits a significant quasi-biweekly oscillation(QBWO,10–25 days).In 32 out of 40 years,there is at least one significant period between 10 and 25 days.Our result provides the first direct evidence for a significant QBWO signal in the NCCV frequency.The QBWO circulation on NCCV days features a cold low-pressure anomaly surrounded by warm high-pressure anomalies from northwest to southeast in a clockwise direction,which is related to an upstream wave train propagating southeastward from the Ural Mountains into Northeast China and a downstream blocking high to the northeast.The NCCV QBWO causes more rainfall,with a quadrature phase shift as rainfall leading the NCCV for approximately three days,and synchronized reduced surface air temperature in Northeast China. 展开更多
关键词 Northeast China cold vortex quasi-biweekly oscillation surface air temperature RAINFALL wave train
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Analysis of Summer Cold Vortex Activity Anomalies in Northeastern China and Their Relationship with Regional Precipitation and Temperature
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作者 孔阳 卢楚翰 +1 位作者 李凯丽 沈逸辰 《Journal of Tropical Meteorology》 SCIE 2024年第2期180-188,共9页
The Northeastern China cold vortex(NCCV)is one type of strong cyclonic vortex that occurs near Northeastern China(NEC),and NCCV activities are typically accompanied by a series of hazardous weather.This paper employed... The Northeastern China cold vortex(NCCV)is one type of strong cyclonic vortex that occurs near Northeastern China(NEC),and NCCV activities are typically accompanied by a series of hazardous weather.This paper employed an automatic algorithm to identify the NCCVs from 1979 to 2018 and analyzed their circulation patterns and climatic impacts by using the defined NCCV intensity index(NCCVI).The analysis revealed that the NCCV activities in summer exhibited a strong inter-annual variability,with an obvious periodicity of 3-4 years and 6-7 years,but without significant trends.In years when the NCCVI was high,NEC experienced negative geopotential height anomalies,cyclonic circulation,and cooler temperature anomalies,which were conducive to the maintenance and development of NCCV activities.Furthermore,large amounts of water vapor converged in NEC through two transportation routes as the NCCVs intensified,leading to a significant positive(negative)correlation with the summer precipitation(surface temperature)in NEC.The Atlantic sea surface temperature(SST)anomalies were closely related to summer NCCV activities.As the Atlantic SST rose,large amounts of surface sensible and latent heat flux were transported into the lower troposphere,inducing a positive geopotential height anomaly that occurred on the east side of the heat source.As a result,an eastward diverging flow was formed in the upper troposphere and propagated downstream,i.e.,the eastward propagating Rossby wave train,which eventually led to a coupled circulation in the Ural Mountains and NEC,as well as more intensive NCCV activities in summer. 展开更多
关键词 Northeastern China cold vortex(NCCV) ANOMALY climatic effects precipitation surface temperature development mechanisms
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The Influence of SST Warm-water Region and ITCZ in the North-West Pacific Ocean on the Northeast Cold Vortex and the Subtropical High
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作者 梁红 马福全 +1 位作者 李大为 刘凯 《Meteorological and Environmental Research》 CAS 2010年第9期18-21,共4页
By using the monthly mean grid data of NCAR/NCEP reanalysis at 500 hPa geopotential height from 1958 to 1997,the relationship between the Northeast cold vortex and the western Pacific subtropical high was analyzed.The... By using the monthly mean grid data of NCAR/NCEP reanalysis at 500 hPa geopotential height from 1958 to 1997,the relationship between the Northeast cold vortex and the western Pacific subtropical high was analyzed.The influence of the sea surface temperature(SST) and outgoing longwave radiation(OLR) on the Northeast cold vortex and subtropical high was studied.As was shown in the results,in summer,there was a positive correlation between the Northeast cold vortex and the subtropical high,and an anti-phase relationship existed between the threshold characteristic line of GMS-SST=28 ℃ and the height index of the Northeast cold vortex and the subtropical high.With the gradual northward moving of the threshold characteristic line,the subtropical high was weakening,and the Northeast cold vortex was increasing and strengthening. 展开更多
关键词 Northeast cold vortex Subtropical high Sea surface temperature(SST) Intertropical convergence zone(ITCZ) China
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IMPACTS OF UPPER-LEVEL COLD VORTEX ON THE RAPID CHANGE OF INTENSITY AND MOTION OF TYPHOON MERANTI(2010) 被引量:13
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作者 李英 郭丽霞 +1 位作者 许映龙 胡姝 《Journal of Tropical Meteorology》 SCIE 2012年第2期207-219,共13页
Typhoon Meranti originated over the western North Pacific off the south tip of the Taiwan Island in 2010.It moved westward entering the South China Sea,then abruptly turned north into the Taiwan Strait,got intensified... Typhoon Meranti originated over the western North Pacific off the south tip of the Taiwan Island in 2010.It moved westward entering the South China Sea,then abruptly turned north into the Taiwan Strait,got intensified on its way northward,and eventually made landfall on Fujian province.In its evolution,there was a northwest-moving cold vortex in upper troposphere to the south of the Subtropical High over the western North Pacific(hereafter referred to as the Subtropical High).In this paper,the possible impacts of this cold vortex on Meranti in terms of its track and intensity variation is investigated using typhoon best track data from China Meteorological Administration,analyses data of 0.5×0.5 degree provided by the global forecasting system of National Centers for Environmental Prediction,GMS satellite imagery and Taiwan radar data.Results show as follows:(1)The upper-level cold vortex was revolving around the typhoon anticlockwise from its east to its north.In the early stage,due to the blocking of the cold vortex,the role of the Subtropical High to steer Meranti was weakened,which results in the looping of the west-moving typhoon.However,when Meranti was coupled with the cold vortex in meridional direction,the northerly wind changed to the southerly at the upper level of the typhoon;at the same time the Subtropical High protruded westward and its southbound steering flow gained strength,and eventually created an environment in which the southerly winds in both upper and lower troposphere suddenly steered Meranti to the north;(2)The change of airflow direction above the typhoon led to a weak vertical wind shear,which in return facilitated the development of Meranti.Meanwhile,to the east of typhoon Meranti,the overlapped southwesterly jets in upper and lower atmosphere accelerated its tangential wind and contributed to its cyclonic development;(3)The cold vortex not only supplied positive vorticity to the typhoon,but also transported cold advection to its outer bands.In conjunction with the warm and moist air masses at the lower levels,the cold vortex increased the vertical instability in the atmosphere,which was favorable for convection development within the typhoon circulation,and its warmer center was enhanced through latent heat release;(4)Vertical vorticity budget averaged over the typhoon area further shows that the intensification of a typhoon vorticity column mainly depends on horizontal advection of its high-level vorticity,low-level convergence,uneven wind field distribution and its convective activities. 展开更多
关键词 upper-level cold vortex TYPHOON INTENSIFICATION north turning Taiwan strait
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Activity of cold vortex in northeastern China and its connection with the characteristics of precipitation and circulation during 1960-2012 被引量:8
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作者 LIU Gang FENG Guolin +3 位作者 QIN Yulin CAO Ling YAO Hongwei LIU Ziqi 《Journal of Geographical Sciences》 SCIE CSCD 2015年第12期1423-1438,共16页
Based on the daily reanalysis data released by NCEP/NCAR and the daily precipi- tation of 753 Chinese stations from May to August during the period of 1960 to 2012, the statistical characteristics of the cold vortex i... Based on the daily reanalysis data released by NCEP/NCAR and the daily precipi- tation of 753 Chinese stations from May to August during the period of 1960 to 2012, the statistical characteristics of the cold vortex in northeastern China were analyzed. In addition, the strength index, which described the characteristics of the vortex consistently and fre- quently, and the geographical distribution were given by continuous anomalies of circulation. Based on this index, the activity routines of the cold vortex, characteristics of atmospheric circulation, and their effects on precipitation in northeastern China were analyzed. The results show that: the activities of the cold vortex exhibit remarkable features of annual and interde- cadal oscillation, and the vortex high frequency and its characteristics of atmospheric circula- tion are described more accurately by the strength index of the cold vortex, which shows a high correspondence with the vortex precipitation during early summer and midsummer in the northeast. In strong (weak) vortex years, the general circulation in the middle and high lati- tudes of Eurasia is to the advantage (disadvantage) of the formation, development and maintenance of the cold vortex, thus it is easy (difficult) to form the circulation which is bene- ficial to transmit vapor from south to north during the period of July to August. Blocking over the Ural Mountains prevails (does not prevail) in early summer, and blocking over the Sea of Okhotsk prevails (does not prevail) in midsummer. Areas where the subtropical high is too small (large) and moves toward the north too late (early) are better (worse) for the mainte- nance of the cold vortex in northeastern China. 展开更多
关键词 northeast cold vortex index of strength CIRCULATION subtropical high
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Analysis of 2 Severe Convective Weather Processes in the Weather Background of Cold Vortex
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作者 崔胜权 张炳川 +1 位作者 孙晓巍 桑明刚 《Meteorological and Environmental Research》 CAS 2010年第5期58-61,65,共5页
In this paper,the analysis of two short periods of strong convection weather occurring in the northern part of Liaoning on August 8,2007 and July 16,2008 is made,which verifies that the two processes are typical sever... In this paper,the analysis of two short periods of strong convection weather occurring in the northern part of Liaoning on August 8,2007 and July 16,2008 is made,which verifies that the two processes are typical severe convective weather processes of cold vortex.They agree on location of occurrence,weather background and the characteristics of radar data. 展开更多
关键词 cold vortex Strong convection LIAONING China
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Classification of Northeast China Cold Vortex Activity Paths in Early Summer Based on K-means Clustering and Their Climate Impact 被引量:13
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作者 Yihe FANG Haishan CHEN +3 位作者 Yi LIN Chunyu ZHAO Yitong LIN Fang ZHOU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2021年第3期400-412,共13页
The classification of the Northeast China Cold Vortex(NCCV)activity paths is an important way to analyze its characteristics in detail.Based on the daily precipitation data of the northeastern China(NEC)region,and the... The classification of the Northeast China Cold Vortex(NCCV)activity paths is an important way to analyze its characteristics in detail.Based on the daily precipitation data of the northeastern China(NEC)region,and the atmospheric circulation field and temperature field data of ERA-Interim for every six hours,the NCCV processes during the early summer(June)seasons from 1979 to 2018 were objectively identified.Then,the NCCV processes were classified using a machine learning method(k-means)according to the characteristic parameters of the activity path information.The rationality of the classification results was verified from two aspects,as follows:(1)the atmospheric circulation configuration of the NCCV on various paths;and(2)its influences on the climate conditions in the NEC.The obtained results showed that the activity paths of the NCCV could be divided into four types according to such characteristics as the generation origin,movement direction,and movement velocity of the NCCV.These included the generation-eastward movement type in the east of the Mongolia Plateau(eastward movement type or type A);generation-southeast longdistance movement type in the upstream of the Lena River(southeast long-distance movement type or type B);generationeastward less-movement type near Lake Baikal(eastward less-movement type or type C);and the generation-southward less-movement type in eastern Siberia(southward less-movement type or type D).There were obvious differences observed in the atmospheric circulation configuration and the climate impact of the NCCV on the four above-mentioned types of paths,which indicated that the classification results were reasonable. 展开更多
关键词 northeastern China early summer Northeast China cold vortex classification of activity paths machine learning method k-means clustering high-pressure blocking
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An Extreme Gale Event in East China under the Arctic Potential Vorticity Anomaly through the Northeast China Cold Vortex 被引量:3
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作者 Wei TAO Linlin ZHENG +1 位作者 Ying HAO Gaoping LIU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2023年第12期2169-2182,共14页
Arctic changes influence not only temperature and precipitation in the midlatitudes but also contribute to severe convection.This study investigates an extreme gale event that occurred on 30 April 2021 in East China a... Arctic changes influence not only temperature and precipitation in the midlatitudes but also contribute to severe convection.This study investigates an extreme gale event that occurred on 30 April 2021 in East China and was forced by an Arctic potential vorticity(PV)anomaly intrusion.Temperature advection steered by storms contributed to the equatorward propagation of Arctic high PV,forming the Northeast China cold vortex(NCCV).At the upper levels,a PV southward intrusion guided the combination of the polar jet and the subtropical jet,providing strong vertical wind shear and downward momentum transportation to the event.The PV anomaly cooled the upper troposphere and the northern part of East China,whereas the lower levels over southern East China were dominated by local warm air,thus establishing strong instability and baroclinicity.In addition,the entrainment of Arctic dry air strengthened the surface pressure gradient by evaporation cooling.Capturing the above mechanism has the potential to improve convective weather forecasts under climate change.This study suggests that the more frequent NCCV-induced gale events in recent years are partly due to high-latitude waviness and storm activities,and this hypothesis needs to be investigated using more cases. 展开更多
关键词 PV anomaly Arctic storm Northeast China cold vortex convection extreme gale
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Objective Identification and Climatic Characteristics of Heavy-Precipitation Northeastern China Cold Vortexes 被引量:3
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作者 Xu CHEN Xiaoyong ZHUGE +2 位作者 Xidi ZHANG Yuan WANG Daokai XUE 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2023年第2期305-316,I0009,I0010,共14页
The northeastern China cold vortex(NCCV)plays an important role in regional rainstorms over East Asia.Using the National Centers for Environmental Prediction Final reanalysis dataset and the Global Precipitation Measu... The northeastern China cold vortex(NCCV)plays an important role in regional rainstorms over East Asia.Using the National Centers for Environmental Prediction Final reanalysis dataset and the Global Precipitation Measurement product,an objective algorithm for identifying heavy-precipitation NCCV(HPCV)events was designed,and the climatological features of 164 HPCV events from 2001 to 2019 were investigated.The number of HPCV events showed an upward linear trend,with the highest frequency of occurrence in summer.The most active region of HPCV samples was the Northeast China Plain between 40°–55°N.Most HPCV events lasted 3–5 days and had radii ranging from 250 to 1000 km.The duration of HPCV events with larger sizes was longer.About half of the HPCV events moved into(moved out of)the definition region(35°–60°N,115°–145°E),and half initiated(dissipated)within the region.The initial position was close to the western boundary of the definition region,and the final position was mainly near the eastern boundary.The locations associated with the precipitation were mostly concentrated within 2000 km southeast of the HPCV systems,and they were farther from the center in the cold season than in the warm season. 展开更多
关键词 northeastern China cold vortex heavy precipitation objective identification climatological features
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The Coordinated Influence of Indian Ocean Sea Surface Temperature and Arctic Sea Ice on Anomalous Northeast China Cold Vortex Activities with Different Paths during Late Summer 被引量:5
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作者 Yitong LIN Yihe FANG +3 位作者 Chunyu ZHAO Zhiqiang GONG Siqi YANG Yiqiu YU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2023年第1期62-77,共16页
The Northeast China cold vortex(NCCV)during late summer(from July to August)is identified and classified into three types in terms of its movement path using machine learning.The relationships of the three types of NC... The Northeast China cold vortex(NCCV)during late summer(from July to August)is identified and classified into three types in terms of its movement path using machine learning.The relationships of the three types of NCCV intensity with atmospheric circulations in late summer,the sea surface temperature(SST),and Arctic sea ice concentration(SIC)in the preceding months,are analyzed.The sensitivity tests by the Community Atmosphere Model version 5.3(CAM5.3)are used to verify the statistical results.The results show that the coordination pattern of East Asia-Pacific(EAP)and Lake Baikal high pressure forced by SST anomalies in the North Indian Ocean dipole mode(NIOD)during the preceding April and SIC anomalies in the Nansen Basin during the preceding June results in an intensity anomaly for the first type of NCCV.While the pattern of high pressure over the Urals and Okhotsk Sea and low pressure over Lake Baikal during late summer-which is forced by SST anomalies in the South Indian Ocean dipole mode(SIOD)in the preceding June and SIC anomalies in the Barents Sea in the preceding April-causes the intensity anomaly of the second type.The third type is atypical and is not analyzed in detail.Sensitivity tests,jointly forced by the SST and SIC in the preceding period,can well reproduce the observations.In contrast,the results forced separately by the SST and SIC are poor,indicating that the NCCV during late summer is likely influenced by the coordinated effects of both SST and SIC in the preceding months. 展开更多
关键词 machine learning method Northeast China cold vortex path classification Indian Ocean sea surface temperature Arctic sea ice model sensitivity test
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Objective identification research on cold vortex and mid-summer rainy periods in Northeast China 被引量:1
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作者 龚志强 封泰晨 房一禾 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第4期571-580,共10页
Considering the differences between the Northeast China Cold Vortex (CV) and the Mid-Summer (MS) rainy period and their corresponding atmospheric circulations are comprehensively analyzed, and the objective identi... Considering the differences between the Northeast China Cold Vortex (CV) and the Mid-Summer (MS) rainy period and their corresponding atmospheric circulations are comprehensively analyzed, and the objective identification methods of defining the annual beginning and ending dates of Northeast China CV and MS rainy periods are developed respectively. The annual beginning date of the CV (MS) rainy period is as follows. In a period from April to August, if daily regional mean precipitation ryi is larger than yearly regional mean precipitation R (or 2R) on a certain day, the station precipitation rs is larger than the station yearly mean precipitation (r/ (or 2(r)) in at least 50% of stations in Northeast China, and this condition is satisfied in the following 2 (7) days, then this date is defined as the beginning date of the CV (MS) rainy period. While the definition of the ending date of the MS rainy period shows the opposite process to its beginning date. With this objective identification method, the multi-year average (1981-2010) beginning date of the CV rainy period is May 3, the beginning date of the MS rainy period is June 27, the ending day of the CV rainy period is defined as the day before the beginning date of the MS rainy period, and the ending date of the MS rainy period is August 29. Meanwhile, corresponding anomaly analysis at a 500-hPa geopotential height, 850-hPa wind, Omega and relative humidity fields all show that the definitions of the average beginning and ending dates of the CV and MS rainy periods have a certain circulation meaning. Furthermore, the daily evolution of the CV index, meridional and zonal wind index, etc. all show that these objectively defined beginning and ending dates of the CV and MS rainy periods have climate significance. 展开更多
关键词 Northeast China cold vortex rainy period mid-summer rain period objective identification method
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Study on the Evolution of a Northeast China Cold Vortex during the Spring of 2010 被引量:2
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作者 FU Shen-Ming SUN Jian-Hua QI Lin-Lin 《Atmospheric and Oceanic Science Letters》 CSCD 2014年第2期149-156,共8页
Based on the final analysis data with horizontal resolution of 1°× 1°(four times a day) from the National Centers for Environmental Prediction(NCEP), a typical Northeast China cold vortex(NCCV) during t... Based on the final analysis data with horizontal resolution of 1°× 1°(four times a day) from the National Centers for Environmental Prediction(NCEP), a typical Northeast China cold vortex(NCCV) during the spring of 2010 was examined with the quasi-Lagrange- form eddy flux circulation(EFC) budget equation. Results indicated that the mechanisms that account for the development, maintenance, and attenuation of the cyclone varied with levels and stages. Displacement of the cyclone and transports by background environmental circulations dominated the variation of the cyclone in the middle and upper levels, whereas displacement and divergence associated with the cyclone dominated the evolution of the NCCV in the middle and lower levels. Moreover, interactions between the NCCV and other subsynoptic weather systems were important for the development of the cyclone, and the pattern of background environmental circulations was also important for the evolution of the NCCV, since the cyclone enhanced(weakened) as it moved from areas of low(high) vorticity to high(low) ones. 展开更多
关键词 Northeast China cold vortex quasi-Lagrange-form eddy flux circulation budget
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The Cold Vortex Circulation over Northeastern China and Regional Rainstorm Events 被引量:4
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作者 Xie Zuo-Wei Bueh Cholaw +1 位作者 Ji Li-Ren Sun Shu-Qing 《Atmospheric and Oceanic Science Letters》 2012年第2期134-139,共6页
In this study,regional rainstorm events (RREs) in northeastern China associated with the activity of the Northeastern China Cold Vortex (NCCV) were investigated on a medium-range time scale.The RREs occurring in north... In this study,regional rainstorm events (RREs) in northeastern China associated with the activity of the Northeastern China Cold Vortex (NCCV) were investigated on a medium-range time scale.The RREs occurring in northeastern China could be categorized into three groups according to the distribution of heavy rainfall.The largest cluster is characterized by the rainstorm events that occur on the northwestern side of the Changbai Mountains along a southwest-northeast axis.These events occur most frequently during the post-meiyu period.The authors place particular emphasis on the RREs that belong to the largest cluster and are closely associated with the activity of the NCCV.These RREs were preconditioned by the transportation of substantial amounts of water vapor to which the anomalous western Pacific subtropical high (WPSH) contributed.The attendant anomalous WPSH was primarily driven by the anomalous transient eddy feedback forcing the nearby East Asian jet.The development of the NCCV circulation was concurrent with the RREs and acted as their primary causative factor.A perspective based on low-frequency dynamics indicates that Rossby wave packets emanated from the blocking-type circulation over northeastern Asia led to the development of the NCCV activity. 展开更多
关键词 RAINSTORM northeastern China cold vortex Rossby wave
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Quadrant-Averaged Structure and Evolution Mechanisms of a Northeast Cold Vortex during Its Mature Stage
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作者 LI Wei SHEN Xin-Yong +1 位作者 FU Shen-Ming LI Wan-Li 《Atmospheric and Oceanic Science Letters》 CSCD 2015年第1期45-51,共7页
A Northeast China cold vortex(NCCV) that maintained from 0200 UTC 3 July to 0500 UTC 3 July 2013 and caused several heavy rainfall events was analyzed in detail to reveal its quadrant-averaged structure and main maint... A Northeast China cold vortex(NCCV) that maintained from 0200 UTC 3 July to 0500 UTC 3 July 2013 and caused several heavy rainfall events was analyzed in detail to reveal its quadrant-averaged structure and main maintaining mechanisms during its mature stage. Results indicated the vortex's intensity, divergence, ascending motions, precipitable water(PW), and thermal structures were all characterized by significant unevenness, and their main pattern changed gradually during the mature stage. Mechanisms accounting for the maintenance of the NCCV were also characterized by remarkable unevenness. Within different quadrants, dominant factors for the vortex's evolution may have differed from each other significantly. The NCCV-averaged vorticity budget revealed that the vertical advection of vorticity, which is closely related to convective activities, was the most favorable factor for maintaining the NCCV, whereas the tilting effect, which is closely related to the vertical shear of the horizontal wind(horizontal vorticity), was the most detrimental factor. 展开更多
关键词 NORTHEAST China cold vortex VORTICITY BUDGET POLAR
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Comparative Forecast Verification for a Rainfall Process Caused by the Northeast Cold Vortex in Different Valid Time
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作者 Wang Ju Zhuo Peng +1 位作者 Ma Huanyu Huang Hong 《Meteorological and Environmental Research》 CAS 2018年第1期44-48,共5页
The forecast of precipitation,height,temperature,divergence and water vapor divergence during a rainfall process in Northeast China during June 13-14 in 2012 were analyzed. The results showed that the rainfall process... The forecast of precipitation,height,temperature,divergence and water vapor divergence during a rainfall process in Northeast China during June 13-14 in 2012 were analyzed. The results showed that the rainfall process in Northeast China on June 13 and 14 in 2012 was mainly caused by the typical northeast cold vortex at 500 h Pa,southwest low-level jet at 850 and 700 h Pa,and surface cyclone. The rainfall forecast valid in 60 h was obviously better than those valid in 36 and 84 h,and the forecast error mainly resulted from the prediction error of vertical water vapor transportation. 展开更多
关键词 Northeast cold vortex CRA FORECAST
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A crossed focused vortex beam with application to cold molecules
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作者 Meng Xia Yaling Yin +6 位作者 Chunying Pei Yuer Ye Ruoxi Gu Kang Yan Di Wu Yong Xia Jianping Yin 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第11期331-337,共7页
We report the generation of a crossed,focused,optical vortex beam by using a pair of hybrid holograms,which combine the vortex phase and lens phase onto a spatial light modulator.We study the intensity distributions o... We report the generation of a crossed,focused,optical vortex beam by using a pair of hybrid holograms,which combine the vortex phase and lens phase onto a spatial light modulator.We study the intensity distributions of the vortex beam in free propagation space,and the relationship of its dark spot size with the incident Gaussian beam’s waist,the lens’s focal length,and its orbital angular momentum.Our results show that the crossed,focused,vortex beam’s dark spot size can be as small as 16.3μm and adjustable by the quantum number of the orbital angular momentum,and can be used to increase the density of trapped molecules.Furthermore,we calculate the optical potential of the blue-detuned,crossed vortex beam for MgF molecules.It is applicable to cool and trap neutral molecules by intensity-gradient-induced Sisyphus cooling,as the intensity gradient of such vortex beam is extremely high near the focal point. 展开更多
关键词 cold molecule crossed focused vortex beam propagation characteristics optical potential
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Modulation of the late summer Northeast China cold vortex by previous-winter ENSO
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作者 Shuo Han Fang Zhou +2 位作者 Minghong Liu Jian Shi Yihe Fang 《Atmospheric and Oceanic Science Letters》 CSCD 2023年第6期34-39,共6页
本文利用再分析资料,研究了前冬ENSO对夏末东北冷涡(NCCV)的调制作用.结果表明,前冬ENSO与夏末NCCV强度之间存在显著的相关性,El Nino(La Ni?a)对应于弱(强)的NCCV.印度洋海盆模态(IOBM)在前冬ENSO对夏末东北亚地区大气环流的影响中起... 本文利用再分析资料,研究了前冬ENSO对夏末东北冷涡(NCCV)的调制作用.结果表明,前冬ENSO与夏末NCCV强度之间存在显著的相关性,El Nino(La Ni?a)对应于弱(强)的NCCV.印度洋海盆模态(IOBM)在前冬ENSO对夏末东北亚地区大气环流的影响中起着至关重要的作用.作为东部型El Nino的被动响应,IOBM可以从前冬一直持续至夏末,并在夏末激发“中国中部上空气旋—东北亚地区上空反气旋”的经向遥相关模态,从而不利于NCCV增强.反之亦然.此外,印度洋的信号在中部型El Nino和中性年份相对较弱,使得它们对于NCCV的影响不显著. 展开更多
关键词 东北冷涡 ENSO 调制 遥相关
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基于高分辨率资料的东北冷涡气候特征 被引量:1
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作者 刘玉莲 康恒元 赵玲 《气象》 北大核心 2025年第7期830-839,共10页
基于ERA5再分析大气环流场数据,以位势高度场为主,温度场为辅,客观识别1979—2023年东北冷涡过程,分析东北冷涡的气候特征。结果表明:20世纪90年代初期和21世纪00年代中期东北冷涡较多,21世纪10年代相对较少;年内分布暖季多于冷季,6月最... 基于ERA5再分析大气环流场数据,以位势高度场为主,温度场为辅,客观识别1979—2023年东北冷涡过程,分析东北冷涡的气候特征。结果表明:20世纪90年代初期和21世纪00年代中期东北冷涡较多,21世纪10年代相对较少;年内分布暖季多于冷季,6月最多,3月最少;平均持续时间为4 d,4月最短,1月最长。东北冷涡中心位置主要集中分布在45°~55°N、115°~135°E,多开始于西北部45°~60°N、100°~120°E,结束于东边界140°E附近的40°~55°N范围。以向东和向东南方向移动的东北冷涡居多。以120°E为界,以东的东北冷涡强度平均偏强,以西偏弱;东北冷涡强度年内分布冷季强于暖季,分析区域3月空间差异最大,6月最小。1979—2023年年平均东北冷涡强度和东北冷涡环流呈明显减弱趋势。东北冷涡强度与我国东北地区大多数月份的气温呈显著负相关,与4月和6月降水量呈显著正相关。 展开更多
关键词 东北冷涡 高分辨率 气候特征
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1961—2022年黑龙江省冬季气温特征及极寒天气分析 被引量:2
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作者 孙鹏飞 曲哲 +5 位作者 张磊 张礼宝 吴岩 谢玉静 李兴权 李瑶 《冰川冻土》 2025年第1期85-97,共13页
为探究黑龙江省冬季气温变化和极寒天气特征,应对极端气候事件,选取黑龙江省84个国家气象站1961/1962—2022/2023年冬季逐日气温数据和ERA5再分析数据,利用天气学和统计学等方法,分析了黑龙江省冬季气温的时空分布特征,对发生极端气温... 为探究黑龙江省冬季气温变化和极寒天气特征,应对极端气候事件,选取黑龙江省84个国家气象站1961/1962—2022/2023年冬季逐日气温数据和ERA5再分析数据,利用天气学和统计学等方法,分析了黑龙江省冬季气温的时空分布特征,对发生极端气温时的大气环流进行探讨,并筛选出对冬季气温有较好指示意义的大气环流指数。结果表明:黑龙江省冬季平均气温和极端最低气温随纬度呈南高北低分布,且均呈升温趋势,极寒天气呈减少趋势,但极寒天气的最长持续时间和最大影响范围并没有明显的减少趋势。极寒天气主要发生在黑龙江北部,其中大兴安岭占总极寒日数的68.7%,小兴安岭占27.6%,其他地区仅占3.7%。极寒天气多发生在1月,占冬季极寒天气总数的56.9%,12月次之(24.5%),2月最少(18.6%)。冬季平均气温和极寒站次在20世纪80年代发生突变,而极端最低气温在20世纪90年代发生突变,与北极涛动(AO)、东亚大槽强度以及秋季北极海冰面积的突变较为一致。黑龙江省冬季气温主要受极地环流影响,极涡偏南可能导致黑龙江省出现持续时间较长的极寒天气。黑潮区海温指数(KCSST)、东亚槽强度指数(EATI)和斯堪的纳维亚遥相关型指数(SCA)与黑龙江省冬季气温相关性较好,对预测未来极端气温变化有较好的指示意义。 展开更多
关键词 黑龙江省冬季气温 极寒天气 极涡 大气环流指数
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2023年6月1日辽宁龙卷风暴环境及演变特征分析 被引量:1
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作者 杨磊 郑永光 +4 位作者 袁潮 曹世腾 才奎志 王瀛 蔡康龙 《大气科学》 北大核心 2025年第5期1510-1526,共17页
2023年6月1日午后辽宁发生5个龙卷,本文利用多源观测和ERA5再分析资料分析了本次多龙卷出现的原因,重点探讨了阜新EF1(“增强藤田级数”1级)和开原EF2(“增强藤田级数”2级)龙卷风暴的环境条件、演变特征和龙卷形成的可能机制。结果表明... 2023年6月1日午后辽宁发生5个龙卷,本文利用多源观测和ERA5再分析资料分析了本次多龙卷出现的原因,重点探讨了阜新EF1(“增强藤田级数”1级)和开原EF2(“增强藤田级数”2级)龙卷风暴的环境条件、演变特征和龙卷形成的可能机制。结果表明:辽宁位于东北冷涡西南象限和高空槽南侧,地面(或850hPa)与500 hPa的强垂直减温率是造成本次过程的极端环境条件因子。辽宁西北部的阜新受低空切变线和干线影响,龙卷风暴由干线上生成的两个孤立风暴合并而成,具有钩状回波、下沉反射率因子核(DRC)和龙卷涡旋特征(TVS);其东侧强回波产生1小时降温超过6℃的强冷池,强冷池出流与干线交汇,在强冷池边缘形成强辐合;当钩状回波移到强辐合区域时,在DRC和TVS下方生成阜新龙卷。而辽宁北部受低空急流影响,0~1km垂直风切变更强,地面辐合线上触发的多个风暴快速合并为线状对流系统,风暴合并期间地面辐合线上出现多个微气旋并导致辽宁北部4个龙卷。其中造成开原龙卷的微气旋的西侧风暴产生1小时降温达到10℃的冷池,该冷池形成更强的出流,与地面辐合线交汇形成了较阜新更强的辐合;当微气旋经过强辐合区时,低层旋转达到生命期最强且首次达到TVS标准时,其下方产生开原龙卷。 展开更多
关键词 龙卷 东北冷涡 干线 微气旋
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