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51.
The seasonal variation of rainy season over the Tibetan Plateau in summer 1998 is analyzed by using daily observational rainfall data for Lhasa from 1955 to 1996,and rainfall data at 70 stations from January to August of 1998 over the Tibetan Plateau (TP) and adjacent regions,as well as TBB data from May to August of 1998.The onset date of rainy season for Lhasa is climatologically 6 June.Among the analyzed years,the earliest onset date is 6 May,while the latest may delay to 2 July.The obvious inter-decadal variation can be found in the series of onset date.The onset date of summer 1998 over middle TP (onset date of Lhasa) is 24 June,which is relatively later than the normal case.The onset for rainy season of 1998 started over southeast and northeast parts of TP and then propagated westward and northward.The convection over east and west parts of TP shows that there is a quasi 12-15 day oscillation.In June,the convection over middle and lower reaches of Yangtze River is formed by the westward propagation of convection over subtropical western Pacific.while in July.it is formed by the eastward propagation of convection over TP.Besides,it is also found that there exists good negative and obvious advance and lag correlation between the convection over the middle and western TP and that over the subtropical western Pacific and southern China.Therefore it can be inferred that a feedback zonal circulation with a quasi two-three week oscillation exists between the ascending region of TP and descending region of subtropical western Pacific,i.e.the convection over TP may affect the subtropical high over western Pacific and vice versa.  相似文献   
52.
该文首先采用合成分析的方法研究了江淮入梅前后大尺度大气环流的演变特征和西太平洋副热带高压西伸北跳的可能机制。研究结果表明, 江淮入梅前期的最显著的特征是:副热带高压首先在太平洋中部增强北跳, 而后向西扩展导致太平洋副高西部脊 (120°E) 的增强北跳。进一步分析表明, 在太平洋中部副热带高压的增强北跳和西伸之前, 副热带高压南侧ITCZ中对流和孟加拉湾北部的对流活动明显并且都经历了一次增强活跃过程, 这意味着热带ITCZ和孟加拉湾北部对流的异常活跃可能对副热带高压的增强北跳西伸产生影响。全球大气环流模式模拟结果表明, 赤道中太平洋ITCZ中对流异常活跃不仅可导致副热带高压的增强北移, 而且还可导致副热带高压西伸, 与诊断分析结果相一致。  相似文献   
53.
在河南省6种雨型的基础上,分析了物理要素海温、季风、西太平洋副高及气候因子和河南省汛期降水的关系,给出了河南省汛期降水的气候预测概念模型。通过逻辑推理,可以具体预测雨型。  相似文献   
54.
The loess-soil sequences in northern China provide a near continuous record of Quaternary paleoclimate. The pedogenetic intensity of the sequences is closely linked with the variations of the East Asian summer monsoon. In this study, 2181 samples from the Changwu and Xifeng loess sections are analyzed and two high-resolution paleo-weathering timeseries of the last 1.2 Ma are generated, using the ratio of CBD extractable free Fe2O3 (FeD) versus the total iron (FeT). This new index is compared with micromorphological features, low-frequency magnetic susceptibility, frequency-dependent magnetic susceptibility, and the Rb/Sr ratio[5,6]. The results suggest that the FeD/FeT ratio is able to better reflect the degree of soil development. Since the chemical weathering of loess in the Loess Plateau region mainly depends upon the summer precipitation and temperature under modern climate condition, which are closely associated with strength of summer monsoon, and the chemical weathering intensity of loess primarily reflects the variations of the summer monsoon circulation.  相似文献   
55.
It is well known that heavy rainfall occurs in the southwestern sector of the monsoon depressions due to strong convergence in that sector. By examining the rainfall distribution associated with the monsoon disturbances (lows and depressions) in one of the central Indian river basins, ‘Godavari’, the author found that when the disturbance-centre is away from the basin, heavy rainfall may also occur in the basin area close to the confluence line and cause severe floods in the river. The confluence line is the zone of convergence between the northeasterlies to the west of the disturbance centre and the monsoon westerlies. This study further reveals the importance of the position and movement of the confluence line with respect to the basin, on which the intensity and the raising period of the resulting flood depend.  相似文献   
56.
Bivariate Wavelet Analysis of Asia Monsoon and ENSO   总被引:21,自引:0,他引:21  
This paper employs some recently developed bivariate wavelet analysis techniques to study the correlation between Asia monsoon and E1 Nino southern oscillation (ENSO).Various energy spectral densities are defined for waveiel transforms,analogous to those used in conventional Fourier analysis.Some comparisons are made by applying both wavelet and Fourier spectral methods (o the data.The wavelet analysis shows evidence of some relationship between Asia monsoon and ENSO,which the Fourier analysis resolves poorly.Correlation on several time scales,ranging from 2-4 years,11 years,and 22 years,become apparent with the wavelet cross-spectrum.Finally,the warelet cross-transform provides time localization of the distinctive features within the data record.  相似文献   
57.
黄土高原晚更新世黄土与古季风研究进展   总被引:2,自引:0,他引:2  
黄土高原晚更新世黄土地层含有末次间冰期一次期东亚季风演变的大量信息,经外地学界十年来的探索,初步揭示了东亚季风演化的规律,本文对于这方面研究的现状作了综合评述。  相似文献   
58.
西藏“一江两河”中游地区风成地层沉积时代、沉积相和磁化率等研究结果表明,早在800KaB.P.前西南季风就已存在,受全球气候波动和青藏高原隆起的影响,其盛行衰变与东南季风具有较好的一致性,主要表现为本区地层所记录的气候变化信息不如东南季风区详细;而且西南季风因高原屏障作用给本区带来的降水愈来愈少,气候明显地向干冷化发展。  相似文献   
59.
南海西南季风爆发日期及其影响因子   总被引:40,自引:6,他引:34  
梁建茵  吴尚森 《大气科学》2002,26(6):829-844
利用1950~1999年NCEP全球格点日平均资料,在总结南海西南季风爆发前后850 hPa大气环流特征的基础上,提出了一个较为客观的确定南海西南季风爆发日期的大气环流方法.在与1980~1991年其他多种指标确定的爆发日期比较后,作者认为该大气环流方法所确定的爆发日期基本合理,并给出了1950~1999年各年南海西南季风爆发的日期.通过合成对比分析和相关分析发现,前期热带太平洋地区海温异常分布是影响南海西南季风爆发早晚的重要因素.菲律宾以东洋面海温偏高,赤道太平洋中部偏东地区海温偏低,可以使低层西太平洋副高减弱、高层中东太平洋洋中槽加深,印度洋热带地区偏西风偏强,印度洋-太平洋热带地区Walker环流偏强,为热带对流在孟加拉湾-南海地区发展提供了有利的环境.在孟加拉湾南部偏西气流的作用下,南海地区对流活动较为容易发展起来,低层较弱的西太平洋副热带高压也容易较早地撤出南海上空,使得南海西南季风较早爆发.反之亦然.  相似文献   
60.
The NCEP reanalyzed data, OLR and SST observations are used to study the onset time and the multi-time scales features of the South China Sea (SCS) summer monsoon in 1998 and its interaction with the sea surface temperature and the effect on the precipitation in Guangdong province. It is found that the 1998 SCS summer monsoon set in on May 17 (in the fourth pentad of the month). The year witnesses a weak monsoon with the OLR oscillating at cycles of about 1 month and the Southwest Monsoon of about 1/2 month. The mon-soon over the Bay of Bengal and the cross-equatorial current near 105°are two driving forces for low-frequency variations of the SCS monsoon. The weak activity in the year was resulted from positive anomalies of SST in the equatorial eastern Pacific in early spring and subsequent formation of positive anomalies of SST in the SCS through the Arabian Sea.  相似文献   
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