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青藏高原大气热量源汇在海-地-气相互作用准4年振荡中的作用 被引量:28
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作者 赵平 陈隆勋 《科学通报》 EI CAS CSCD 北大核心 2000年第15期1666-1671,共6页
使用1961-1995年逐月的青藏高原地区大气视热量源汇< Q_1>资料、英国气象局的海温资料和美国国家大气研究中心和环境预报中心(NCEP/NCAR)再分析资料,讨论了青藏高原热状况与亚洲太平洋地区大气环流和E1 N... 使用1961-1995年逐月的青藏高原地区大气视热量源汇< Q_1>资料、英国气象局的海温资料和美国国家大气研究中心和环境预报中心(NCEP/NCAR)再分析资料,讨论了青藏高原热状况与亚洲太平洋地区大气环流和E1 Nino/La Nina的关系,发现:青藏高原<Q1>,高原东侧低层经向风、赤道太平洋低层纬向风、赤道东太平洋海温以及高原北侧中、高纬度环流之间存在着明显的相互作用,其相互影响的周期大约为4年,并且在该周期上它们之间存在着明显的位相差异.冬季青藏高原冷源强度可以使以后几个月的高原东侧中国大陆及其沿海地区对流层低层长时间维持异常经向风,并诱生出太平洋热带地区大范围的异常纬向风,从而对秋、冬季 E1 Nino/La Nina产生影响,而秋、冬季赤道东太平洋海表温度(SST)变化又可以影响下一个冬季的东亚大槽位置和冷空气移动路径,从而对青藏高原冬季冷源起作用. 展开更多
关键词 青藏高原 热力作用 海-地-气相互作用
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Effect of Decadal Changes in Air-Sea Interaction on the Climate Mean State over the Tropical Pacific 被引量:3
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作者 FANG Xiang-Hui ZHENG Fei 《Atmospheric and Oceanic Science Letters》 CSCD 2014年第5期400-405,共6页
Collaboration of interannual variabilities and the climate mean state determines the type of E1 Nifio. Recent studies highlight the impact of a La Nifia-like mean state change, which acts to suppress the convection an... Collaboration of interannual variabilities and the climate mean state determines the type of E1 Nifio. Recent studies highlight the impact of a La Nifia-like mean state change, which acts to suppress the convection and low-level convergence over the central Pacific, on the predominance of central Pacific (CP) E1 Nifio in the most recent decade. However, how interannual variabilities affect the climate mean state has been less thoroughly investigated. Using a linear shallow-water model, the ef- fect of decadal changes of air-sea interaction on the two types of El Nifio and the climate mean state over the tropical Pacific is examined. It is demonstrated that the predominance of the eastem Pacific (EP) and CP E1 Nino is dominated mainly by relationships between anomalous wind stresses and sea surface temperature (SST). Furthermore, changes between air-sea interactions from 1980-98 to 1999-2011 prompted the generation of the La Ninalike pattern, which is similar to the background change in the most recent decade. 展开更多
关键词 air-sea interaction EP E1 Nifio CP E1 Nifio La Nina-like mean state change
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An Ocean Reanalysis System for the Joining Area of Asia and Indian-Pacific Ocean 被引量:9
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作者 YAN Chang-Xiang ZHU Jiang XIE Ji-Ping 《Atmospheric and Oceanic Science Letters》 2010年第2期81-86,共6页
An ocean reanalysis system for the joining area of Asia and Indian-Pacific Ocean (AIPO) has been developed and is currently delivering reanalysis data sets for study on the air-sea interaction over AIPO and its climat... An ocean reanalysis system for the joining area of Asia and Indian-Pacific Ocean (AIPO) has been developed and is currently delivering reanalysis data sets for study on the air-sea interaction over AIPO and its climate variation over China in the inter-annual time scale.This system consists of a nested ocean model forced by atmospheric reanalysis,an ensemble-based multivariate ocean data assimilation system and various ocean observations.The following report describes the main components of the data assimilation system in detail.The system adopts an ensemble optimal interpolation scheme that uses a seasonal update from a free running model to estimate the background error covariance matrix.In view of the systematic biases in some observation systems,some treatments were performed on the observations before the assimilation.A coarse resolution reanalysis dataset from the system is preliminarily evaluated to demonstrate the performance of the system for the period 1992 to 2006 by comparing this dataset with other observations or reanalysis data. 展开更多
关键词 reanalysis system data assimilation ensemble optimal interpolation background error covariance
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Relationship Between Upper-Ocean Heat Content in the Tropical Indian Ocean and Summer Precipitation in China 被引量:5
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作者 HUANG Ke ZHANG Qi-Long +1 位作者 XIE Qiang WANG Dong-Xiao 《Atmospheric and Oceanic Science Letters》 2012年第4期306-313,共8页
An analysis of the Ishii ocean heat content(OHC) in the tropical Indian Ocean from the surface to 700-m depth shows that the OHC changes dramatically on the interannual timescale in the Indian Ocean.The first mode of ... An analysis of the Ishii ocean heat content(OHC) in the tropical Indian Ocean from the surface to 700-m depth shows that the OHC changes dramatically on the interannual timescale in the Indian Ocean.The first mode of empirical orthogonal function(EOF1) of the OHC shows that there is a strong air-sea interaction pattern in the Indian Ocean with a positive(negative) loading in the east and a negative(positive) loading in the west.This seesaw oscillation pattern influences the summer precipitation in China with a North-South reversed distribution.Composite analysis shows that during a positive(negative) OHC episode,an anomalous cyclonic(anticyclonic) circulation over the western Pacific and South China weakens(enhances) the monsoonal northward flow in the lower troposphere;meanwhile,anomalous meridional circulation connects the descending(ascending) branch over the Southeast Indian Ocean and the ascending(descending) branch in South China as well as a descending(ascending) branch over North China.Analysis of the mechanism behind these features suggests that(1) the accumulation of OHC-induced vorticity is related to the wave activity over the mid-latitudes and that(2) the meridional teleconnection induced by the Indo-Pacific air-OHC interaction appears over East Asia and the western Pacific.Both of these patterns can cause summer precipitation anomalies in China. 展开更多
关键词 oceanic heat content summer precipitation interannual variability tropical Indian Ocean
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