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101.
正5月12日,我国"科学"号海洋科考船完成首个科考任务返回青岛母港。在本次航行中,"科学"号科考船携带丰硕的成果满载而归:在冲绳海槽发现了2个"黑烟囱"、4个热液溢流区,采集到硫化物、岩石和沉积物等地质样品30多件。"科学"号首航承担的是中国科学院海洋先导性科技专项和国家"973计划"项目的西太平洋  相似文献   
102.
In this study, three high frequent occurrence regions of tropical cyclones(TCs), i.e., the northern South China Sea(the region S), the south Philippine Sea(the region P) and the region east of Taiwan Island(the region E), are defined with frequency of TC's occurrence at each grid for a 45-year period(1965–2009), where the frequency of occurrence(FO) of TCs is triple the mean value of the whole western North Pacific. Over the region S, there are decreasing trends in the FO of TCs, the number of TCs' tracks going though this region and the number of TCs' genesis in this region. Over the region P, the FO and tracks demonstrate decadal variation with periods of 10–12 year, while over the region E, a significant 4–5 years' oscillation appears in both FO and tracks. It is demonstrated that the differences of TCs' variation in these three different regions are mainly caused by the variation of the Western Pacific Subtropical High(WPSH) at different time scales. The westward shift of WPSH is responsible for the northwesterly anomaly over the region S which inhibits westward TC movement into the region S. On the decadal timescale, the WPSH stretches northwestward because of the anomalous anticyclone over the northwestern part of the region P, and steers more TCs reaching the region P in the greater FO years of the region P. The retreating of the WPSH on the interannual time scale is the main reason for the FO's oscillation over the region E.  相似文献   
103.
利用1948~2008年共61年NCEP/NCAR再分析资料对全球的大气热源(汇)统计处理,采用经验正交函数分解方法、气候态平均分析方法,分析了东亚地区的大气热源、热汇的基本气候特征,对61年来东亚地区大气热源热汇各月,各季节的气候态分析,并从全球的大气热源、热汇剖面分析中了解了其变化规律。揭示了全球大范围的大气热源区主要分布在南亚—热带印度洋—热带太平洋的中部和西部两侧、南美洲的赤道及其南侧地区一带,并得出其变化的平均趋势;0~60°N,每10个纬度带内热源、热汇的年变化不仅与全球纬向平均的热源、热汇年变化有非常大的差异,而且亚洲,青藏高原、东亚大陆、西太平洋地区6个平均纬度带之间的差异也非常明显。  相似文献   
104.
利用1951—2010年我国江淮流域11个测站夏季(6—8月)降水资料和NCAR提供的北半球月平均海平面气压场资料以及相关的西太平洋副高指数资料,采用Morlet小波变换、交叉小波变换及相关分析等方法讨论了降水准两年振荡现象的年际变化规律及其与东亚夏季风、副高的关系。结果表明,准两年振荡分量在江淮地区夏季降水场的年际振荡中十分重要,且经历了由强到弱再到强的变化过程;同时降水与夏季风强度及副高脊线位置的准两年变化均存在较好的同期相关,彼此间的相互影响还体现在年际尺度上,并分别在4 a和1 a时间尺度上有明显的滞后、超前关系。  相似文献   
105.
夏季贝加尔湖南侧环流异常的前兆信号   总被引:2,自引:2,他引:0       下载免费PDF全文
利用1978—2012年NCEP/NCAR逐月再分析资料,对夏季贝加尔湖南侧环流异常的前兆信号进行分析。结果表明:前期冬季印度尼西亚到西太平洋地区对流与夏季贝加尔湖南侧反气旋式环流异常存在一致的变化,为预测夏季贝加尔湖南侧环流异常的前兆信号之一。即当前期冬季印度尼西亚到西太平洋地区对流活动偏强时,夏季对流区北抬至青藏高原西侧,进而有利于贝加尔湖南侧反气旋式环流异常的发生和维持。但是,进一步研究表明,夏季西印度洋对流活动异常将干扰青藏高原及其西侧的对流上升运动对贝加尔湖环流的影响。当夏季西印度洋对流偏强时,前期冬季印度尼西亚到西太平洋对流和夏季青藏高原西侧对流变化表现出不一致。偏强的西印度洋对流将干扰青藏高原及其西侧的对流上升运动对贝加尔湖环流的影响,进而不利于贝加尔湖南侧反气旋式环流异常的形成。当夏季西印度洋对流异常弱时,前期冬季印度尼西亚到西太平洋地区的对流可能引起夏季贝加尔湖南侧环流异常,两者呈现一致的变化;但当夏季西印度洋对流强盛时,将可能改变上述两者的变化关系。  相似文献   
106.
CMIP5/AMIP GCM simulations of East Asian summer monsoon   总被引:1,自引:0,他引:1  
The East Asian summer monsoon (EASM) is a distinctive component of the Asian climate system and critically influences the economy and society of the region.To understand the ability of AGCMs in capturing the major features of EASM,10 models that participated in Coupled Model Intercomparison Project/Atmospheric Model Intercomparison Project (CMIP5/AMIP),which used observational SST and sea ice to drive AGCMs during the period 1979-2008,were evaluated by comparing with observations and AMIP Ⅱ simulations.The results indicated that the multi-model ensemble (MME) of CMIP5/AMIP captures the main characteristics of precipitation and monsoon circulation,and shows the best skill in EASM simulation,better than the AMIP Ⅱ MME.As for the Meiyu/Changma/Baiyu rainbelt,the intensity of rainfall is underestimated in all the models.The biases are caused by a weak western Pacific subtropical high (WPSH) and accompanying eastward southwesterly winds in group Ⅰ models,and by a too strong and west-extended WPSH as well as westerly winds in group Ⅱ models.Considerable systematic errors exist in the simulated seasonal migration of rainfall,and the notable northward jumps and rainfall persistence remain a challenge for all the models.However,the CMIP5/AMIP MME is skillful in simulating the western North Pacific monsoon index (WNPMI).  相似文献   
107.
The intraseasonal oscillation(ISO) in the South China Sea summer monsoon(SCSSM) and its influence on regionally persistent heavy rain(RPHR) over southern China are examined by using satelhte outgoing long wave radiation,NCEP/NCAR reanalysis,and gridded rainfall station data in China from 1981 to 2010.The most important feature of the ISO in SCSSM,contributing to the modulation of RPHR,is found to be the fluctuation in the western Pacific subtropical high(WPSH),along with a close link to the Madden-Julian oscillation(MJO).Southern China is divided into three regions by using rotated empirical orthogonal functions(REOFs)for intraseasonal rainfall,where the incidence rate of RPHR is closely linked to the intraseasonal variation in rainfall.It is found that SCSSM ISOs are the key systems controlling the intraseasonal variability in rainfall and can be described by the leading pair of empirical orthogonal functions(EOFs) for the 850-hPa zonal wind over the SCS and southern China.Composite analyses based on the principal components(PCs) of the EOFs indicate that the ISO process in SCSSM exhibits as the east-west oscillation of the WPSH,which is coupled with the northward-propagating MJO,creating alternating dry and wet phases over southern China with a period of 40 days.The wet phases provide stable and lasting circulation conditions that promote RPHR.However,differences in the ISO structures can be found when RPHR occurs in regions where the WPSH assumes different meridional positions.Further examination of the meridional-phase structure suggests an important role of northward-propagating ISO and regional air-sea interaction in the ISO process in SCSSM.  相似文献   
108.
Using hindcasts of the Beijing Climate Center Climate System Model, the relationships between interannual variability (IAV) and intraseasonal variability (ISV) of the Asian-western Pacific summer monsoon are diagnosed. Predictions show reasonable skill with respect to some basic characteristics of the ISV and IAV of the western North Pacific summer monsoon (WNPSM) and the Indian summer monsoon (ISM). However, the links between the seasonally averaged ISV (SAISV) and seasonal mean of ISM are overestimated by the model. This deficiency may be partially attributable to the overestimated frequency of long breaks and underestimated frequency of long active spells of ISV in normal ISM years, although the model is capable of capturing the impact of ISV on the seasonal mean by its shift in the probability of phases. Furthermore, the interannual relationships of seasonal mean, SAISV, and seasonally averaged long-wave variability (SALWV; i.e., the part with periods longer than the intraseasonal scale) of the WNPSM and ISM with SST and low-level circulation are examined. The observed seasonal mean, SAISV, and SALWV show similar correlation patterns with SST and atmospheric circulation, but with different details. However, the model presents these correlation distributions with unrealistically small differences among different scales, and it somewhat overestimates the teleconnection between monsoon and tropical central-eastern Pacific SST for the ISM, but underestimates it for the WNPSM, the latter of which is partially related to the too-rapid decrease in the impact of E1 Nifio-Southern Oscillation with forecast time in the model.  相似文献   
109.
魏颖 《气象知识》2014,(1):52-55
每年夏季是台风活动的活跃时期,一个接一个的台风在西太平洋上生成发展,并经常地登陆我国、韩国、日本和东南亚各阳,给陆地带来降水的同时也可能造成灾难。  相似文献   
110.
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