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The Interannual Variability of East Asian Winter Monsoon and Its Relation to the Summer Monsoon 被引量:164
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作者 陈文 Han-F.Graf 黄荣辉 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2000年第1期48-60,共13页
Based on the NCEP/ NCAR reanalysis data the interannual variability of the East Asian winter mon-soon (EAWM) is studied with a newly defined EAWM intensity index. The marked features for a strong (weak) winter monsoon... Based on the NCEP/ NCAR reanalysis data the interannual variability of the East Asian winter mon-soon (EAWM) is studied with a newly defined EAWM intensity index. The marked features for a strong (weak) winter monsoon include strong (weak) northerly winds along coastal East Asia, cold (warm) East Asian continent and surrounding sea and warm (cold) ocean from the subtropical central Pacific to the trop-ical western Pacific, high (low) pressure in East Asian continent and low (high) pressure in the adjacent ocean and deep (weak) East Asian trough at 500 hPa. These interannual variations are shown to be closely connected to the SST anomaly in the tropical Pacific, both in the western and eastern Pacific. The results suggest that the strength of the EAWM is mainly influenced by the processes associated with the SST anom-aly over the tropical Pacific. The EAWM generally becomes weak when there is a positive SST anomaly in the tropical eastern Pacific (El Ni?o), and it becomes strong when there is a negative SST anomaly (La Ni?a). Moreover, the SST anomaly in the South China Sea is found to be closely related to the EAWM and may persist to the following summer. Both the circulation at 850 hPa and the rainfall in China confirm the connection between the EAWM and the following East Asian summer monsoon. The possible reason for the recent 1998 summer flood in China is briefly discussed too. Key words East Asian winter monsoon - Interannual variability - SST - Summer monsoon This study was supported by “ National Key Programme for Developing Basic Sciences” G1998040900 part 1, and by key project (KZ 952-S1-404) of Chinese Academy of Sciences. 展开更多
关键词 East asian winter monsoon Interannual variability SST summer monsoon
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Interdecadal Variability of the East Asian Summer Monsoon and Associated Atmospheric Circulations 被引量:14
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作者 曾刚 孙照渤 +1 位作者 Wei-Chyung WANG 闵锦忠 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2007年第5期915-926,共12页
Based on the National Centers for Environmental Prediction and National Center for Atmospheric Research (NCEP/NCAR) reanalysis data from 1950-1999, interdecadal variability of the East Asian Summer Monsoon (EASM) ... Based on the National Centers for Environmental Prediction and National Center for Atmospheric Research (NCEP/NCAR) reanalysis data from 1950-1999, interdecadal variability of the East Asian Summer Monsoon (EASM) and its associated atmospheric circulations are investigated. The EASM exhibits a distinct interdecadal variation, with stronger (weaker) summer monsoon maintained from 1950-1964 (1976-1997). In the former case, there is an enhanced Walker cell in the eastern Pacific and an anti-Walker cell in the western Pacific. The associated ascending motion resides in the central Pacific, which flows eastward and westward in the upper troposphere, descending in the eastern and western ends of the Pacific basin. At the same time, an anomalous East Asian Hadley Cell (EAHC) is found to connect the low-latitude and mid-latitude systems in East Asia, which strengthens the EASM. The descending branch of the EAHC lies in the west part of the anti-Walker cell, flowing northward in the lower troposphere and then ascending at the south of Lake Baikal (40°-50°N, 95°- 115°E) before returning to low latitudes in the upper troposphere, thus strengthening the EASM. The relationship between the EASM and SST in the eastern tropical Pacific is also discussed. A possible mechanism is proposed to link interdecadal variation of the EASM with the eastern tropical Pacific SST. A warmer sea surface temperature anomaly (SSTA) therein induces anomalous ascending motion in the eastern Pacific, resulting in a weaker Walker cell, and at the same time inducing an anomalous Walker cell in the western Pacific and an enhanced EAHC, leading to a weaker EASM. Furthermore, the interdecadal variation of summer precipitation over North China is found to be the south of Lake Baikal through enhancing and reducing strongly regulated by the velocity potential over the regional vertical motions. 展开更多
关键词 East asian summer monsoon interdecadal variability Walker circulation East asian Hadley circulation
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Interannual Variability of the Convective Activities Associated with the East Asian Summer Monsoon Obtained from TBBV ariability 被引量:13
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作者 任保华 黄荣辉 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 1999年第1期79-92,共14页
In this paper, the interannual variability of the convective activities associated with the East Asian summer monsoon and its association with the thermal distribution of SST anomalies in the tropical Pacific are anal... In this paper, the interannual variability of the convective activities associated with the East Asian summer monsoon and its association with the thermal distribution of SST anomalies in the tropical Pacific are analyzed by using the daily TBB (Temperature of Black Body at Cloud Top) dataset from 1980 to 1991. The results of composite and individual analyses of TBB anomalies show that the interannual variability of the convective activities associated with the summer monsoon in East Asia is large and has a close relation to the thermal distribution of SST anomalies in the tropical Pacific, especially in the western Pacific warm pool. In the summer with ENSO-like distribution of SST anomalies in the tropical Pacific, the convective activities are weak around the Philippines, then the convective activities are intensified and the summer monsoon rainfall is strong in the area from the Yangtze River basin and the Huaihe River basin in China to Republic of Korea and Japan. On the contrary, in the summer with anti-ENSO-like distribution of SST anomalies in the tropical Pacific, the convective activities are strong around the Philippines, then the convective activities are weakened and the summer monsoon rainfall is weak in the area from the Yangtze River basin and the Huaihe River basin to Republic of Korea and Japan. It may be also found either from the composite analysis or from the individual analysis of TBB anomalies that the convective activities associated with the summer monsoon in East Asia have a good negative relation to that around the Philippines and a positive relation to that over the equatorial central Pacific. 展开更多
关键词 TBB East asian summer monsoon Convective activity Interannual variability
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Differences and Links between the East Asian and South Asian Summer Monsoon Systems:Characteristics and Variability 被引量:5
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作者 Ronghui HUANG Yong LIU +2 位作者 Zhencai DU Jilong CHEN Jingliang HUANGFU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2017年第10期1204-1218,共15页
This paper analyzes the differences in the characteristics and spatio–temporal variabilities of summertime rainfall and water vapor transport between the East Asian summer monsoon(EASM) and South Asian summer mons... This paper analyzes the differences in the characteristics and spatio–temporal variabilities of summertime rainfall and water vapor transport between the East Asian summer monsoon(EASM) and South Asian summer monsoon(SASM) systems. The results show obvious differences in summertime rainfall characteristics between these two monsoon systems. The summertime rainfall cloud systems of the EASM show a mixed stratiform and cumulus cloud system, while cumulus cloud dominates the SASM. These differences may be caused by differences in the vertical shear of zonal and meridional circulations and the convergence of water vapor transport fluxes. Moreover, the leading modes of the two systems' summertime rainfall anomalies also differ in terms of their spatiotemporal features on the interannual and interdecadal timescales. Nevertheless, several close links with respect to the spatiotemporal variabilities of summertime rainfall and water vapor transport exist between the two monsoon systems. The first modes of summertime rainfall in the SASM and EASM regions reveal a significant negative correlation on the interannual and the interdecadal timescales. This close relationship may be linked by a meridional teleconnection in the regressed summertime rainfall anomalies from India to North China through the southeastern part over the Tibetan Plateau, which we refer to as the South Asia/East Asia teleconnection pattern of Asian summer monsoon rainfall. The authors wish to dedicate this paper to Prof. Duzheng YE, and commemorate his 100 thanniversary and his great contributions to the development of atmospheric dynamics. 展开更多
关键词 East asian summer monsoon South asian summer monsoon spatiotemporal variability rainfall water vapor transport
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Simulated Change in the Interannual Variability of South Asian Summer Monsoon in the 21st Century 被引量:1
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作者 富元海 陆日宇 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2010年第5期992-1002,共11页
This study investigates the projected changes in interannual variability of South Asian summer monsoon and changes of ENSO–monsoon relationships in the 21st century under the Intergovernmental Panel on Climate Change... This study investigates the projected changes in interannual variability of South Asian summer monsoon and changes of ENSO–monsoon relationships in the 21st century under the Intergovernmental Panel on Climate Change (IPCC) scenarios A1B and A2, respectively, by analyzing the simulated results of twelve Coupled Model Intercomparison Project Phase 3 (CMIP3) coupled models. The dynamical monsoon index (DMI) was adopted to describe the interannual variability of South Asian summer monsoon, and the standard deviation (SD) was used to illustrate the intensity of interannual variability. It was found that most models could project enhanced interannual variability of monsoon in the 21st century. The multi-model ensemble (MME) results showed increases in the interannual variability of DMI: 14.3% and 20.0% under scenarios A1B and A2, respectively. The MME result also showed increases in the rainfall variability are of about 10.2% and 22.0% under scenarios A1B and A2. The intensification of interannual variability tended to occur over the regions that have larger variability currently; that is, "the strong get stronger". Another finding was that ENSO–monsoon relationships are likely to be enhanced in the 21st century. The dynamical component of the monsoon will be more closely correlated to ENSO in the future under global warming, although the ENSO–summer rainfall relationship cannot be reasonably projected by current models. This suggests that the South Asian summer monsoon is more predictable in the future, at least dynamically. 展开更多
关键词 climate change interannual variability South asian summer monsoon ENSO–monsoon rela- tionship
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Interdecadal Variability of East Asian Summer Monsoon Precipitation over 220 Years (1777-1997)
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作者 Chun-Ji KIM 钱维宏 +1 位作者 Hyun-Suk KANG Dong-Kyou LEE 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2010年第2期253-264,共12页
In this study, long-term (1777–1997) precipitation data for Seoul, Korea, wetness indices from eastern China, and modern observations are used to identify the interdecadal variability in East Asian summer monsoon p... In this study, long-term (1777–1997) precipitation data for Seoul, Korea, wetness indices from eastern China, and modern observations are used to identify the interdecadal variability in East Asian summer monsoon precipitation over the last 220 years. In the East Asian monsoon region, two long-term timescales of dry–wet transitions for the interdecadal variability and quasi-40-and quasi-60-year timescales are dominant in the 220-year precipitation data of Seoul, as well as in the wetness indices over China. The wet and dry spells between Seoul (southern China) and northern China are out-of-phase (out-of-phase) at the quasi-60-year timescale, and in-phase (out-of-phase by approximately 90 ? before 1900 and in-phase after 1900) at the quasi-40-year timescale. In particular, during the last century, the dominant long-term timescales over East Asia tend to decrease from the quasi-60-year to the quasi-40-year with increasing time. The dominant quasi-40-year and quasi-60-year timescales of the Seoul precipitation in Korea are strongly correlated with these timescales of the northern Pacific Ocean. 展开更多
关键词 interdecadal variability East asian summer monsoon precipitation TIMESCALES dry–wet transition
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Evaluation of the interannual variability in the East Asian summer monsoon in AMIP and historical experiments of CAS FGOALS-f3-L
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作者 Xiaoqi Zhang Bian He +2 位作者 Qing Bao Yimin Liu Guoxiong Wu 《Atmospheric and Oceanic Science Letters》 CSCD 2023年第1期14-21,共8页
对东亚夏季季风(EASM)模拟的评估可以提高我们对亚洲季风动力和气候模拟的理解.在这项研究中,通过使用中国科学院(CAS)全球海洋-大气-陆地系统(FGOALS-f3-L)模式参加的第六次耦合模式相互比较计划(CMIP6)中的大气模式相互比较计划(AMIP... 对东亚夏季季风(EASM)模拟的评估可以提高我们对亚洲季风动力和气候模拟的理解.在这项研究中,通过使用中国科学院(CAS)全球海洋-大气-陆地系统(FGOALS-f3-L)模式参加的第六次耦合模式相互比较计划(CMIP6)中的大气模式相互比较计划(AMIP)和历史(historical)试验,明确了EASM的年际变率的模拟能力.通过多变量经验正交函数(MV-EOF)分析发现,观测的EASM的主导模态为西太平洋上的太平洋-日本模态,并伴有局部反气旋异常.主导模态的方差贡献率为24.6%.历史(historical)试验可以基本再现这种空间模态,其方差贡献率较AMIP试验更接近于观测.与AMIP试验相比,历史(historical)试验还能更好地模拟EASM变率的时间频率.然而,由于历史(historical)模拟没有在积分开始时应用初始化过程,而AMIP试验受到海表面温度(SST)的约束,因此主成分(PC1)的位相在历史(historical)试验中没有得到较好地再现.进一步分析发现,印度洋和西太平洋热带地区的海气相互作用对EASM的模拟非常重要,而EASM气候变率的模拟可能与厄尔尼诺-南方涛动(ENSO)的模拟能力有关,这值得进一步分析. 展开更多
关键词 东亚夏季季风 年际变化 CMIP6 模式评估 FGOALS-f3-L
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An Index Measuring the Interannual Variation of the East Asian Summer Monsoon-The EAP Index 被引量:76
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作者 黄刚 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2004年第1期41-52,共12页
Based on the EAP (East Asia/Pacific) teleconnection in the summer circulation anomalies over the Northern Hemisphere, an index measuring the strength of the East Asian summer monsoon, i.e., the so-called EAP index, is... Based on the EAP (East Asia/Pacific) teleconnection in the summer circulation anomalies over the Northern Hemisphere, an index measuring the strength of the East Asian summer monsoon, i.e., the so-called EAP index, is defined in this paper. From the analyses of observed data, it is clearly shown that the EAP index defined in this study can well describe the interannual variability of summer rainfall and surface air temperature in East Asia, especially in the Yangtze River valley and the Huaihe River valley, Korea, and Japan. Moreover, this index can also reflect the interannual variability of the East Asian summer monsoon system including the monsoon horizontal circulation and the vertical-meridional circulation cell over East Asia. From the composite analyses of climate and monsoon circulation anomalies for high EAP index and for low EAP index, respectively, it is well demonstrated that the EAP index proposed in this study can well measure the strength of the East Asian summer monsoon. 展开更多
关键词 East Asia/Pacific index East asian summer monsoon interannual variability
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Subseasonal features of the Asian summer monsoon in the NCEP climate forecast system 被引量:3
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作者 Song YANG WEN Min R Wayne HIGGINS 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2008年第3期88-103,共16页
The operational climate forecast system (CFS) of the US National Centers for Environmental Prediction provides climate predictions over the world, and CFS products are becoming an important source of information for... The operational climate forecast system (CFS) of the US National Centers for Environmental Prediction provides climate predictions over the world, and CFS products are becoming an important source of information for regional climate predictions in many Asian countries where monsoon climate dominates. Recent studies have shown that, on monthly-to-seasonal time-scales, the CFS is highly skillful in simulating and predicting the variability of the Asian monsoon. The higher-frequency variability of the Asian summer monsoon in the CFS is analyzed, using output from a version with a spectral triangular truncation of 126 waves in horizontal and 64 sigma layers in vertical, focusing on synoptic, quasi-biweekly, and intraseasonal time-scales. The onset processes of different regional monsoon components were investigated within Asia. Although the CFS generally overestimates variability of monsoon on these time-scales, it successfully captures many major features of the variance patterns, especially for the synoptic timescale. The CFS also captures the timing of summer monsoon onsets over India and the Indo-China Peninsula. However, it encounters difficulties in simulating the onset of the South China Sea monsoon. The success and failure of the CFS in simulating the onset of monsoon precipitation can also be seen from the associated features of simulated atmospheric circulation processes. Overall, the CFS is capable of simulating the synoptic-to-intraseasonal variability of the Asian summer monsoon with skills. As for seasonal-tointerannual time-scales shown previously, the model is expected to possess a potential for skillful predictions of the high-frequency variability of the Asian monsoon. 展开更多
关键词 asian summer monsoon ONSET EVOLUTION synoptic-to-intraseasonal variability NCEP climate prediction system
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Recent Advances in Understanding Multi-scale Climate Variability of the Asian Monsoon 被引量:1
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作者 Wen CHEN Renhe ZHANG +12 位作者 Renguang WU Zhiping WEN Liantong ZHOU Lin WANG Peng HU Tianjiao MA Jinling PIAO Lei SONG Zhibiao WANG Juncong LI Hainan GONG Jingliang HUANGFU Yong LIU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2023年第8期1429-1456,共28页
Studies of the multi-scale climate variability of the Asian monsoon are essential to an advanced understanding of the physical processes of the global climate system.In this paper,the progress achieved in this field i... Studies of the multi-scale climate variability of the Asian monsoon are essential to an advanced understanding of the physical processes of the global climate system.In this paper,the progress achieved in this field is systematically reviewed,with a focus on the past several years.The achievements are summarized into the following topics:(1)the onset of the South China Sea summer monsoon;(2)the East Asian summer monsoon;(3)the East Asian winter monsoon;and(4)the Indian summer monsoon.Specifically,new results are highlighted,including the advanced or delayed local monsoon onset tending to be synchronized over the Arabian Sea,Bay of Bengal,Indochina Peninsula,and South China Sea;the basic features of the record-breaking mei-yu in 2020,which have been extensively investigated with an emphasis on the role of multi-scale processes;the recovery of the East Asian winter monsoon intensity after the early 2000s in the presence of continuing greenhouse gas emissions,which is believed to have been dominated by internal climate variability(mostly the Arctic Oscillation);and the accelerated warming over South Asia,which exceeded the tropical Indian Ocean warming,is considered to be the main driver of the Indian summer monsoon rainfall recovery since 1999.A brief summary is provided in the final section along with some further discussion on future research directions regarding our understanding of the Asian monsoon variability. 展开更多
关键词 asian monsoon multi-scale climate variability monsoon onset East asian summer monsoon East asian winter monsoon Indian summer monsoon
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EAWM-Related Air-Sea-Land Interaction and the Asian Summer Monsoon Circulation
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作者 布和朝鲁 纪立人 +1 位作者 孙淑清 崔茂常 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2001年第5期659-673,共15页
Based on the data analysis, this study further explores the characteristics of East Asian winter monsoon (hereafter, EAWM, for brevity) as well as the related air-sea-land system, and illustrates how and to what degre... Based on the data analysis, this study further explores the characteristics of East Asian winter monsoon (hereafter, EAWM, for brevity) as well as the related air-sea-land system, and illustrates how and to what degree anomalous signals of the subsequent Asian summer monsoon are rooted in the preceding EAWM activity. We identified an important air-sea coupled mode, i.e., the EAWM mode illustrated in Section 3. In cold seasons, strong EAWM-related air-sea two-way interaction is responsible for the development and persistence of the SSTA pattern of EAWM mode. As a consequence, the key regions, i.e., the western Pacific and South China Sea (hereafter, SCS, for brevity), are dominated by such an SSTA pattern from the winter to the following summer. In the strong EAWM years, the deficient snow cover dominates eastern Tibetan Plateau in winter, and in spring, this anomaly pattern is further strengthened and extended to the northwestern side of Tibetan Plateau. Thus, the combined effect of strong EAWM-related SSTA and Tibetan snow cover constitutes an important factor in modulating the Asian monsoon circulation. The active role of the EAWM activity as well as the related air-sea-land interaction would, in the subsequent seasons, lead to: 1) the enhancement of SCS monsoon and related stronger rainfall; 2) the northward displacement of subtropical high during Meiyu period and the related deficient rainfall over Meiyu rainband; 3) above-normal precipitation over the regions from northern Japan to northeastern China in summer; 4) more rainfall over the Arabian Sea and Northeast India, while less rainfall over southwest India and the Bay of Bengal. The strong EAWM-related air-sea interaction shows, to some degree, precursory signals to the following Asian summer monsoon. However, the mechanism for the variability of Indian summer monsoon subsequent to the strong EAWM years remains uncertain. 展开更多
关键词 EAWM air-sea-land interaction interannual variability asian summer monsoon
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The East Asian Subtropical Summer Monsoon:Recent Progress 被引量:7
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作者 何金海 刘伯奇 《Journal of Meteorological Research》 SCIE CSCD 2016年第2期135-155,共21页
The East Asian subtropical summer monsoon(EASSM) is one component of the East Asian summer monsoon system,and its evolution determines the weather and climate over East China.In the present paper,we firstly demonstr... The East Asian subtropical summer monsoon(EASSM) is one component of the East Asian summer monsoon system,and its evolution determines the weather and climate over East China.In the present paper,we firstly demonstrate the formation and advancement of the EASSM rainbelt and its associated circulation and precipitation patterns through reviewing recent studies and our own analysis based on JRA-55(Japanese 55-yr Reanalysis) data and CMAP(CPC Merged Analysis of Precipitation),GPCP(Global Precipitation Climatology Project),and TRMM(Tropical Rainfall Measuring Mission) precipitation data.The results show that the rainy season of the EASSM starts over the region to the south of the Yangtze River in early April,with the establishment of strong southerly wind in situ.The EASSM rainfall,which is composed of dominant convective and minor stratiform precipitation,is always accompanied by a frontal system and separated from the tropical summer monsoon system.It moves northward following the onset of the South China Sea summer monsoon.Moreover,the role of the land-sea thermal contrast in the formation and maintenance of the EASSM is illustrated,including in particular the effect of the seasonal transition of the zonal land-sea thermal contrast and the influences from the Tibetan Plateau and midlatitudes.In addition,we reveal a possible reason for the subtropical climate difference between East Asia and East America.Finally,the multi-scale variability of the EASSM and its influential factors are summarized to uncover possible reasons for the intraseasonal,interannual,and interdecadal variability of the EASSM and their importance in climate prediction. 展开更多
关键词 East asian subtropical summer monsoon rainbelt formation and advancement precipitation property zonal land-sea thermal contrast seasonal transition midlatitude influence multiscale variability
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A new index to describe the tropical Asian summer monsoon 被引量:2
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作者 ZhongFeng Xu CongBin Fu YongFu Qian 《Science China Earth Sciences》 SCIE EI CAS 2009年第6期843-854,共12页
We define a new monsoon index (MV) as the product of relative vorticity and equivalent potential temperature using the long-term NCEP/NCAR reanalysis data. The MV index provides new insights into the intraseasonal and... We define a new monsoon index (MV) as the product of relative vorticity and equivalent potential temperature using the long-term NCEP/NCAR reanalysis data. The MV index provides new insights into the intraseasonal and interannual variabilities of the broa 展开更多
关键词 TROPICAL asian summer monsoon monsoon INDEX INTRASEASONAL variability INTERANNUAL variability
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The onset and advance of the Asian summer monsoon 被引量:7
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作者 Lü Junmei ZHANG Qingyun +1 位作者 TAO Shiyan JU Jianhua 《Chinese Science Bulletin》 SCIE EI CAS 2006年第1期80-88,共9页
Based on the daily outgoing longwave radiation (OLR) data from National Oceanic and At- mospheric Administration (NOAA) satellites, the Cli- mate Prediction Center’s merged analysis of pre- cipitation (CMAP) data and... Based on the daily outgoing longwave radiation (OLR) data from National Oceanic and At- mospheric Administration (NOAA) satellites, the Cli- mate Prediction Center’s merged analysis of pre- cipitation (CMAP) data and the National Centers for Environmental Prediction/National Center for At- mospheric Research (NCEP/NCAR) reanalysis dataset, the mean intraseasonal variability of the Asian summer monsoon (ASM) is investigated by using power spectrum analysis, band-pass filter, and diagnostic analyses. The processes of the onset and advance of monsoon over the southern part of Indo- china Peninsula, the east coast of Bay of Bengal, the South China Sea and the Indian subcontinent are explored. It is found that there is an abrupt change in OLR, precipitation and zonal wind during the onset and advance of the ASM. It is also indicated that the southern part of Indochina Peninsula and the adja- cent Andaman Sea is the region where the earliest onset of the ASM occurs in the 2nd pentad of May. 展开更多
关键词 亚洲 季风 夏季 NOAA OLR
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论东亚夏季风的特征、驱动力与年代际变化 被引量:87
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作者 丁一汇 司东 +4 位作者 柳艳菊 王遵娅 李怡 赵亮 宋亚芳 《大气科学》 CSCD 北大核心 2018年第3期533-558,共26页
本文是以新的资料和研究结果对东亚夏季风的基本特征、驱动力和年代际变化所作的重新分析与评估。内容包括四个部分:(1)东亚夏季风的基本特征;(2)东亚夏季风的驱动力;(3)东亚夏季风的年代际变率与原因;(4)东亚夏季风与全球季风的关系。... 本文是以新的资料和研究结果对东亚夏季风的基本特征、驱动力和年代际变化所作的重新分析与评估。内容包括四个部分:(1)东亚夏季风的基本特征;(2)东亚夏季风的驱动力;(3)东亚夏季风的年代际变率与原因;(4)东亚夏季风与全球季风的关系。结果表明:东亚夏季风是亚洲夏季风的一个重要有机部分,主要由来源于热带的季风气流组成,并随季节由南向北呈阶段性推进,它是形成夏季东亚天气与气候的主要环流和降水系统。驱动夏季风的主要强迫有三部分:外部强迫、耦合强迫与内部变率,其中人类活动引起的外强迫(气候变暖、城市化、气溶胶增加等)是新出现的外强迫,它正不断改变着东亚夏季风的特征与演变趋势。海洋与陆面耦合强迫作为自然因子是引起东亚夏季风年际和年代际变化的主要原因,其中太平洋年代尺度振荡(PDO)与北大西洋多年代尺度振荡(AMO)的协同作用是造成东亚夏季风30~40年周期振荡的主要原因。1960年代以后,东亚夏季风经历了强—弱—强的年代际变化,相应的中国东部夏季降水型出现了"北多南少"向"南涝北旱"以及"北方渐增"的转变。最近的研究表明,上述东亚夏季风年代际变化与整个亚非夏季风系统的变化趋势是一致的。在本世纪主要受气候变暖的影响,夏季风雨带将持续北移,中国北方和西部地区出现持续性多雨的格局。最后本文指出,亚非夏季风系统相比于其他区域季风系统更适合全球季风的概念。 展开更多
关键词 东亚夏季风 夏季风特征 季风驱动力 年代际变化 全球季风
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1873~2000年东亚夏季风变化的研究 被引量:115
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作者 郭其蕴 蔡静宁 +1 位作者 邵雪梅 沙万英 《大气科学》 CSCD 北大核心 2004年第2期206-215,i002,共11页
根据英国的海平面气压 (SLP)资料计算了 1 873~ 1 95 0年东亚夏季风指数 (ISM)与用NCEP的SLP资料计算的 1 95 1~ 2 0 0 0年ISM衔接 ,构成 1 2 8年的ISM 序列。用功率谱及子波变换方法分析了ISM 的变化 ,指出 80年周期最突出 ,其次尚有... 根据英国的海平面气压 (SLP)资料计算了 1 873~ 1 95 0年东亚夏季风指数 (ISM)与用NCEP的SLP资料计算的 1 95 1~ 2 0 0 0年ISM衔接 ,构成 1 2 8年的ISM 序列。用功率谱及子波变换方法分析了ISM 的变化 ,指出 80年周期最突出 ,其次尚有 40年周期 ,8~ 1 0年周期及准 2年周期。分析表明 ,夏季风弱时中国东部夏季气温低 ,降水自北向南为负、正、负分布。夏季风强时 ,气温偏高 ,降水异常为正、负、正分布。对年际变化而言 ,降水与夏季风的关系要复杂一些 。 展开更多
关键词 东亚夏季风 年代际变化 年际变化 海平面气压 SLP
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亚洲夏季风的年际和年代际变化及其未来预测 被引量:106
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作者 丁一汇 孙颖 +6 位作者 刘芸芸 司东 王遵娅 朱玉祥 柳艳菊 宋亚芳 张锦 《大气科学》 CSCD 北大核心 2013年第2期253-280,共28页
本文是对我们近五年在亚洲夏季风年代际与年际变率及其未来预测方面研究的一个综述。主要包括下列三个问题:(1)根据123年中国夏季降水资料和印度学者的分析,检测出亚洲夏季风具有明显的年代际尺度减弱,这种年代际变化使中国东部(包括东... 本文是对我们近五年在亚洲夏季风年代际与年际变率及其未来预测方面研究的一个综述。主要包括下列三个问题:(1)根据123年中国夏季降水资料和印度学者的分析,检测出亚洲夏季风具有明显的年代际尺度减弱,这种年代际变化使中国东部(包括东亚)和南亚夏季降水的格局在过去60年中发生了明显变化。在东亚,从1970年代后期开始,主要异常雨带有不断南移的趋势,结果造成了南涝北旱的降水分布,这主要受到60~80年年代际振荡的影响。青藏高原前冬和春季积雪的年代际减少与热带中东太平洋海表温度的年代际增加是东亚降水型改变的主要原因,这是通过减弱亚洲地区夏季海陆温差与夏季风强度而实现的。未来亚洲夏季风的预测表明,东亚夏季风和南亚夏季风对气候变暖有十分不同的响应。东亚夏季风在本世纪将增强,雨带北推,尤其在2040年代之后;而南亚夏季风环流将继续减弱。这种不同的变化是由于两者对高低层海陆热力差异的不同响应造成。(2)年际尺度的变率在亚洲夏季风区主要表现为2年与4~7年的振荡。本文着重分析了2年振荡(TBO)形成的过程、机理及其对东亚降水的影响。对TBO—海洋机理进行了具体的改进,说明了东亚夏季风降水深受TBO影响的原因,尤其是阐明了长江型(YRV)TBO和淮河型(HRV)TBO的特征及其形成的循环过程。(3)在总结亚洲夏季风时期遥相关型的基础上,本文提出了季节内和年际尺度的低空遥相关型:即西北太平洋季风的遥相关型与印度"南支"和"北支"遥相关型。它们基本上反映了沿低空夏季风强风速带Rossby波群速度传播的结果。据此可以根据西北太平洋和印度夏季风的变化分别预测中国梅雨和华北雨季来临和降水异常。最后研究还表明,在本世纪亚洲夏季风可能更显著地受到人类活动造成的全球变暖的影响,未来的亚洲夏季风活动是人类排放的CO2引起的全球变暖与自然变化(海洋和陆面过程(积雪))共同作用的结果。 展开更多
关键词 亚洲夏季风 年代际和年际变率 对流层两年振荡(TBO) 遥相关型 季风预测
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东亚夏季风的年代际变率对中国气候的影响 被引量:117
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作者 郭其蕴 蔡静宁 +1 位作者 邵雪梅 沙万英 《地理学报》 EI CSCD 北大核心 2003年第4期569-576,共8页
利用NCEP的海平面气压(SLP) 资料,按6月~8月10oN~50oN陆(110oE)、海(160oE) 气压差≤-5 hPa的累计值代表夏季风强度。每年的值被1951~2000年50年平均值除作为夏季风指数(SMI)。近50年的SMI序列表明有明显的年代际变化,1970年代中之... 利用NCEP的海平面气压(SLP) 资料,按6月~8月10oN~50oN陆(110oE)、海(160oE) 气压差≤-5 hPa的累计值代表夏季风强度。每年的值被1951~2000年50年平均值除作为夏季风指数(SMI)。近50年的SMI序列表明有明显的年代际变化,1970年代中之前强夏季风年(SMI > 1) 占优势,1976年开始均为弱夏季风年(SMI < 1)。同时研究了SMI与中国夏季(6月~8月) 降水量与平均气温的关系。发现夏季风强时中国东部华北多雨,长江少雨,同时长江到淮河气温高,但中国西部在夏季风强时南部多雨,北部少雨,气温为北高南低。夏季风弱时情况相反。同时指出,夏季风的年代际变化还影响到夏季风与中国气候的年际变化关系。 展开更多
关键词 东亚夏季风 年代际变率 气候影响 中国
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东亚季风近几十年来的主要变化特征 被引量:72
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作者 王会军 范可 《大气科学》 CSCD 北大核心 2013年第2期313-318,共6页
本文简要综述了关于东亚夏季风和冬季风近几十年来的主要变化特征的若干研究结果,特别是关于其年代际变化方面。夏季风及夏季气候的主要变化特征有:1970年代末之后东亚夏季风的年代际时间尺度的减弱以及相应的我国夏季降水江淮流域增多... 本文简要综述了关于东亚夏季风和冬季风近几十年来的主要变化特征的若干研究结果,特别是关于其年代际变化方面。夏季风及夏季气候的主要变化特征有:1970年代末之后东亚夏季风的年代际时间尺度的减弱以及相应的我国夏季降水江淮流域增多而华北减少、1992年之后我国华南夏季降水增多、1999年之后我国长江中下游夏季降水减少而淮河流域夏季降水增多、东亚夏季风和ENSO之间的年际变化相关性存在不稳定性。而关于东亚冬季风与冬季气候的主要变化特征有:1980年代中期之后东亚冬季风及其年际变率减弱、1970年代中期之后冬季风和ENSO的年际变化相关性较弱、近年来的北极秋季海冰减少对北半球冬季积雪增多有显著贡献、东北冬季积雪在1980年代中期以后增多。与上述变化有关的极端气候和物候都发生了多方面的变化。 展开更多
关键词 东亚夏季风 东亚冬季风 年代际变化 ENSO 海冰
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南亚夏季风年际变化特征分析 被引量:22
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作者 王可丽 江灏 吴虹 《高原气象》 CSCD 北大核心 2001年第3期318-324,共7页
由于季风活动与降水的时空变化有直接的联系 ,故而定量化研究季风的活动对预测旱涝等灾害性天气有重要意义。但是从目前的研究现状来看 ,量化指标描述的结果多具有明显的不一致性。因此 ,在确定定量化指标之前还需要对季风的气候学特征... 由于季风活动与降水的时空变化有直接的联系 ,故而定量化研究季风的活动对预测旱涝等灾害性天气有重要意义。但是从目前的研究现状来看 ,量化指标描述的结果多具有明显的不一致性。因此 ,在确定定量化指标之前还需要对季风的气候学特征有更多的了解。为此 ,本文利用 195 8— 1997年NCEP NCAR再分析月平均资料 ,首先分析了南亚地区风场演变的基本特征。分析表明 ,85 0hPa与2 0 0hPa纬向风的垂直切变具有显著的季节变化特征 ,6~ 9月为特征期 ,0°~ 2 0°N ,4 0°~ 13 0°E为特征区。在此基础上对南亚夏季风的年际变化问题作了分析和讨论。结果表明 :在南亚夏季风区季风增强或减弱的整体性是第一位的 ,是最主要的年际变化方式 ;大约以 80°E为分界线 ,以西的印度夏季风与以东的东南亚夏季风增强、减弱的反向变化是第二位的 ,而且主要反映了东南亚夏季风的年际变化特征 ;根据纬向风垂直切变的主要特征模选取了 4类具有典型特征的南亚夏季风类型 ,与不同类型南亚夏季风风场相对应的降水场分布有明显的差异。 展开更多
关键词 南亚 夏季风 年际变化 降水场 时空变化 旱涝灾害
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