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31.
In this study, the seasonal transition of precipitation over the middle and lower reaches of the Yang-tze River Valley (YRV) from late spring to early summer is investigated. The results show that the seasonal transition of precipitation exhibits multi-modes. One of these modes is characterized by an abrupt transition from drought to flood (ATDF) over the middle and lower reaches of the YRV in the seasonal transition of precipitation. It is shown that the ATDF event from May to June 2011 is simply one prominent case of the ATDF mode. The ATDF mode exhibits an obvious decadal variability. The mode has occurred more frequently since 1979, and its amplitude has apparently strengthened since 1994. From the climatic view, the ATDF mode configures a typical seasonal circulation transition from winter to summer, for which the winter circulations are prolonged, and the summer circulations with the rainy season are built up early over the YRV.  相似文献   
32.
针对2008年初1月17~23日我国南方地区雨雪低温过程,分析了其中期演变特征及其可能机理。这次过程中:1)西太平洋副热带高压在其前期异常状态的基础上,在对流层低层演变为“内凹外凸”结构,并在我国长江中下游附近形成切变线,从而造成了这次雨雪过程;2)在对流层上层,源自北非的Rossby波能量在副热带和中纬度地区向下游频散,同从乌拉尔山地区向南频散出的Rossby波能量在帕米尔高原及中亚地区汇合,共同引起该地区气压槽的加深。它使对流层低层西太平洋副高在其西部向内凹陷。另一方面,在对流层中层,Rossby波能量沿副热带急流传播,最终引起西太平洋副高向西南方向伸展。西太平洋副热带高压的“内凹外凸”演变特征的主要原因是来自上游地区的Rossby波活动,并非热带西太平洋对流异常活动;3)亚洲北部冷高压沿高原东侧伸入我国东部地区是我国南方地区低温过程的主要原因。  相似文献   
33.
Using gauge precipitation data and NCEP-NCAR reanalysis data, the interdecadal changes in summer precipitation during the period 1956-2007 in North China and the link with atmospheric circulation change over Eurasia are studied. Results show that precipitation amounts decreased by 16.2 mm per decade, which was attributable to a significant reduction in precipitation frequency. Contrary wave trains were found in the subtropical westerly jet (wave guide) over Eurasia for the wet and dry years of North China. When the wave trains had a ridge (trough) around the Korean Peninsula, conditions favored (disfavored) the westward and northward extension of the West Pacific subtropical high. The westward and northward extension of the West Pacific subtropical high is, and was, beneficial to rainfall in North China. The downstream propagation of Rossby waves was found to favor the maintenance of these wave trains. Sensible heating in the south of Lake Baikal and latent heating from the Korean Peninsula to the south of Japan increased during the period 1980-2007, as compared to that during 1957-1979. the wet period. These changes had positive influences on the maintenance of Anticyclonic-Cyclonic anomaly centers in the wave trains. Furthermore, northerly winds were prevalent in the lower troposphere during the dry period (1980-2007). which prohibited the transportation of water vapor to North China from the seas and thereby led to a decrease in rainfall in North China. The weakening of the Indian Monsoon during the dry period might be one of reasons for the reduction in water vapor transportation.  相似文献   
34.
The Cloud Processes of a Simulated Moderate Snowfall Event in North China   总被引:1,自引:0,他引:1  
The understanding of the cloud processes of snowfall is essential to the artificial enhancement of snow and the numerical simulation of snowfall. The mesoscale model MM5 is used to simulate a moderate snowfall event in North China that occurred during 20–21 December 2002. Thirteen experiments are performed to test the sensitivity of the simulation to the cloud physics with different cumulus parameterization schemes and different options for the Goddard cloud microphysics parameterization schemes. It is shown that the cumulus parameterization scheme has little to do with the simulation result. The results also show that there are only four classes of water substances, namely the cloud water, cloud ice, snow, and vapor, in the simulation of the moderate snowfall event. The analysis of the cloud microphysics budgets in the explicit experiment shows that the condensation of supersaturated vapor, the depositional growth of cloud ice, the initiation of cloud ice, the accretion of cloud ice by snow, the accretion of cloud water by snow, the deposition growth of snow, and the Bergeron process of cloud ice are the dominant cloud microphysical processes in the simulation. The accretion of cloud water by snow and the deposition growth of the snow are equally important in the development of the snow.  相似文献   
35.
Cold air outbreaks (CAOs) always hit East Asia during boreal winter and have significant impacts on human health and public transport. The amplitude and route of CAOs are closely associated with blocking circulations over the Eurasian continent. Two categories of CAOs are recognized, namely, the ordinary cold wave events (CWEs) and the extensive and persistent extreme cold events (EPECEs), with the latter having even stronger impacts. The blocking features associated with these two types of CAOs and their differences are investigated in this study on the intraseasonal timescale. What these two CAOs do have in common is that they are both preceded by the intensification and recurrence of a blocking high over the midlatitude North Atlantic. The difference between these events is primarily reflected on the spatial scale and duration of the corresponding blocking high. During the CWEs, blocking occurs around the Ural Mountains, and exhibits a regional feature. The resulting cold air temperature persists for only up to 8 days. In contrast, during the EPECEs, the blocking region is quite extensive and is not only confined around the Ural Mountains but also extends eastward into Northeast Asia in a southwest–northeast orientation. As a result, the cold air tends to accumulate over a large area and persists for a much longer time. The blocking activity is primarily induced by an increased frequency and eastward extension of the synoptic anticyclonic Rossby wave breaking (AWB). Compared with the CWEs, characterized by a regional and short-lived synoptic AWB frequency, the EPECEs tend to be accompanied by more recurrent and eastward extensions of the synoptic AWB.  相似文献   
36.
6月初,亚洲中高纬地区的气温迅速增暖后趋于稳定,大气环流由冬季环流转变为夏季环流。根据1951~2017年间各年亚洲中高纬地区春夏季节转换(以下简称季节转换)的时间,基于NCEP再分析资料和中国地区的观测资料,研究了季节转换发生早晚对梅雨期中国地区降水及环流的影响。在季节转换偏早(晚)年的梅雨期,对流层中层(500 hPa)高度距平场从东北亚中高纬、中国东北和日本以南地区出现“+ ? +”(“? + ?”)的经向波状结构。在850 hPa距平风场上,也有相近的波状结构。当东北亚脊偏强(弱)时,东北地区为气旋式(反气旋式)环流距平,西太平洋副热带为反气旋式(气旋式)距平。环流异常导致东北地区降水异常偏多(少),长江流域降水偏少(多)。本文还初步探讨了亚洲中高纬地区入夏时间的早晚如何影响梅雨期大气环流和中国东部降水异常的途径。在季节转换偏早(晚)年,东北亚高压脊建立较早(晚),强度偏强(弱),而且对应的东北亚脊异常往往可持续到梅雨期结束,从而有利于东亚沿岸 “+ ? +”(“? + ?”)经向波状环流及相应雨带的形成。  相似文献   
37.
基于1948~2013年NCEP/NCAR逐日再分析资料,采用850 hPa相对涡度场气旋追踪方法,统计了春季蒙古气旋的活动特征,包括其源地、盛期位置、消亡地以及路径的分布。在此基础上,根据蒙古气旋的不同移动路径,界定了蒙古气旋的两种路径,即向东路径和东南路径,并统计了这两类气旋的频数与强度的年际和年代际变化。同时还揭示了这两类蒙古气旋的低频背景环流特征。本文主要结论如下:(1)蒙古气旋主要生成于贝加尔湖南侧和东侧的山脉背风坡,并在蒙古东部地区以及我国东北地区达到盛期,多数气旋消亡于东北亚及其临海区域;(2)两类气旋的生成个数均有显著的年代际变化。向东路径气旋在1950年代的个数偏少,1970年代至1990年代的个数整体偏多,之后有所减少,但进入21世纪后气旋有个数呈现增多的趋势。东南路径气旋在1970年代以前一直处于偏少阶段,1970年代至1980年代中期处于偏多阶段,2005年以后东南路径气旋个数有减少的趋势;(3)向东路径蒙古气旋的背景低频环流由斯堪的纳维亚半岛正异常中心、贝加尔湖及西侧的负异常中心以及环日本海地区的正异常中心所组成的正位相斯堪的纳维亚环流型为主要特征。东南路径蒙古气旋则以俄罗斯西部的负异常中心、拉普捷夫海附近延伸到我国西北地区的正高度异常区以及东北低涡环流为主要特征。  相似文献   
38.
内蒙古夏季降水变率的优势模态及其环流特征   总被引:3,自引:1,他引:2  
本文基于1961~2013年的中国气象局降水资料以及NCEP/NCAR再分析资料,针对内蒙古地区夏季降水,利用经验正交函数分解法(EOF)和合成分析法,考察了年际尺度上内蒙古地区夏季降水分布的不同类型,并分析其前两个模态的典型环流形势以及相关的春夏季节转换特征。内蒙古夏季降水在年际尺度上主要分为整体一致型和东西反向型。整体一致型模态以贝加尔湖北侧和南侧对流层中上层环流的反位相变化、源于伊朗北部-中亚地区的中纬度遥相关型波列以及东亚地区“东高西低”或“西高东低”的环流形势为主要特征。而东西反向型模态以东欧平原-乌拉尔山东侧-内蒙古东部及东北地区为异常中心的波状环流以及东亚沿岸中高纬地区偶极子环流异常(“北高南低”或“北低南高”)为主要特征。这两种夏季降水模态的正负位相分别对应着亚洲中高纬环流春夏季节转换提前和滞后的情形。这些结论有助于进一步认识内蒙古地区夏季降水异常及其典型环流特征,从而为其预测提供参考依据。  相似文献   
39.
Two supercold waves straddling 2020 and 2021 successively hit China and caused record-breaking extremely low temperatures.In this study,the distinct features of these two supercold waves are analyzed on the medium-range time scale.The blocking pattern from the Kara Sea to Lake Baikal characterized the first cold wave,while the large-scale tilted ridge and trough over the Asian continent featured the second cold wave.Prior to the cold waves,both the northwest and hyperpolar paths of cold air contributed to a zonally extensive cold air accumulation in the key region of Siberia.This might be the primary reason why strong and extensive supercold waves occur even under the Arctic amplification background.The two cold waves straddling 2020 and 2021 exhibited distinct features:(1)the blocking circulation occurred to the north or the east of the Ural Mountains and was not confined only to the Ural Mountains as it was for the earlier cold waves;(2)the collocation of the Asian blocking pattern and the polar vortex deflection towards East Asia preferred the hyperpolar path of cold air accumulation and the subsequent southward outburst;and(3)both high-and low-frequency processes worked in concert,leading to the very intense cold waves.The cold air advance along the northwest path,which coincides with the southeastward intrusion of the Siberian High(SH)front edge,is associated with the high-frequency process,while the cold air movement along the hyperpolar path,which is close to the eastern edge of the SH,is controlled by the low-frequency process.  相似文献   
40.
1.IntroductionTheatmosphericextratropicallow-frequencyvariability(LFV)haslongbeenthesubjectofmanyobservationalandtheoreticals...  相似文献   
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