青藏高原隆升对我国西南地区气候的影响——从季风角度研究
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Influence of the Tibetan Plateau uplift on climate evolution in southwestern China:from the monsoon perspective
  • 作者:包浪 ; 王楠 ; 倪志耀 ; 卢涛
  • 英文作者:BAO Lang;WANG Nan;NI Zhiyao;LU Tao;Chengdu University of Technology, Geosciences College;Key Laboratory of Mountain Ecological Restoration and Bioresource Utilization & Ecological Restoration, Biodiversity Conservation Key Laboratory of Sichuan Province, Chengdu Institute of Biology, Chinese Academy of Sciences;
  • 关键词:青藏高原 ; 构造隆升 ; 亚洲季风 ; 气候演化 ; 西南地区
  • 英文关键词:Tibetan Plateau;;tectonic uplift;;Asian monsoon;;climate evolution;;southwestern China
  • 中文刊名:DQHJ
  • 英文刊名:Journal of Earth Environment
  • 机构:成都理工大学地球科学学院;中国科学院成都生物研究所中国科学院山地恢复与生物资源利用重点实验室生态恢复与生物多样性保育四川省重点实验室;
  • 出版日期:2018-10-15
  • 出版单位:地球环境学报
  • 年:2018
  • 期:v.9;No.50
  • 基金:国家重点研发计划项目(2016YFC0502101);; 国家自然科学基金项目(41371126)~~
  • 语种:中文;
  • 页:DQHJ201805003
  • 页数:11
  • CN:05
  • ISSN:61-1482/X
  • 分类号:34-44
摘要
青藏高原隆升作为新生代最重要的地质事件,对亚洲乃至全球气候演化产生了深刻的影响。我国西南地区因紧邻青藏高原、地形地貌复杂,该区青藏高原隆升的气候效应至今仍存在许多需要探讨的问题。本文通过整理总结青藏高原隆升与亚洲季风各子系统形成与发展的相关性,从季风的角度分析了高原隆升对西南地区气候的影响。主要结论如下:(1)对西南地区气候起控制性作用的东亚季风、南亚季风以及高原季风的形成与青藏高原的隆升密切相关。虽然东亚夏季偏南风在约22 Ma就因海陆差异形成,但冬季风却是在约7.2 Ma因青藏高原隆升才出现;南亚夏季风(西南季风)约在12 Ma因喜马拉雅山脉及临近山脉形成而出现,而其冬季风形成时间及原因与东亚冬季风相似,同样离不开青藏高原的隆升;高原季风形成的直接因素就是高原隆升,其约在36 Ma青藏高原主体隆升至约1500 m时才开始形成。(2)亚洲季风各子系统对西南地区的气候演变有重要影响。尽管东亚冬季风不能直接影响西南地区,但青藏高原隆升增强了海陆差异及其热源作用,在一定程度上扩大了东亚夏季风的影响范围,并给西南地区带来水汽;南亚冬季风使得西南地区变得相对寒冷干燥,而南亚夏季风因青藏高原的隆升得到进一步加强,其通过形成南北向的水汽通道成为西南地区温暖湿润气候的主导者;高原冬、夏季风随着青藏高原隆升使得西南地区季节性干冷与湿润气候的差异更加显著。
        Background, aim, and scope As one of the most important geological events in Cenozoic era, the uplift of Tibetan Plateau had profound influences on the Asian and global climate evolution. The southwestern China is close to Tibetan Plateau and the uplift of the plateau has great impact on its climate. But so far, there are still a lot of issues that need to be investigated further. Materials and methods To study the influence of Tibetan Plateau uplift on Asian monsoon environment, and to summarize the correlation between different forms of tectonic uplifts and Asian monsoon, and especially to analyze the influence of Tibetan Plateau uplift on the climate evolution in southwestern China, this paper reviewed most of the relevant literatures in the past decades. Results The results showed that:(1) The formation of East Asian monsoon, South Asian monsoon and plateau monsoon, which control the climate evolution in southwestern China, is closely related to the uplift of Tibetan Plateau.(2) The three Asian monsoon subsystems have great impact on the climate evolution in southwestern China. Discussion(1) Although the East Asian summer monsoon formed at about 22 Ma due to sea and land differences, the winter monsoon formed at 7.2 Ma due to Tibetan Plateau uplift. Moreover, the South Asian summer monsoon formed at about 12 Ma due to the uplifts of the Himalayas and adjacent mountains, and its winter monsoon formed at the same time of East Asian winter monsoon. Remarkable facts are that the formation of plateau monsoon is directly due to plateau uplift.(2) The uplift of Tibetan Plateau has enhanced the land-sea difference, and its heat source effect expand the influence of East Asian summer monsoon and bring water vapor to southwestern China. The South Asian winter monsoon makes the southwestern region relatively cold and dry, and the summer monsoon further strengthened due to the Tibetan Plateau uplift, which has made the climate become more warm and humid by forming north-south water vapor channel. As for the winter and summer plateau monsoons, the plateau uplift has made the difference between seasonal dry-cold and humid climates in southwestern China even more significant. Conclusions The uplift of Tibetan Plateau has great impact on the climate evolution in southwestern China by affecting Asian monsoon in this region. Recommendations and perspectives The explanation of Tibetan Plateau uplift's impact on the climate evolution in southwestern China remains controversial. Thus, it is necessary to provide more accurate data for further verification.
引文
安芷生,刘晓东.2000.东亚季风气候的历史与变率[J].科学通报,45(3):238-249.[An Z S,Liu X D.2000.The history and variability of the East Asian monsoon climate[J].Chinese Science Bulletin,45(3):238-249.]
    安芷生,吴国雄,李建平,等.2015.全球季风动力学与气候变化[J].地球环境学报,6(6):341-381.[An Z S,Wu G X,Li J P,et al.2015.Global monsoon dynamics and climate change[J].Journal of Earth Environment,6(6):341-381.]
    安芷生,张培震,王二七,等.2006.中新世以来我国季风-干旱环境演化与青藏高原的生长[J].第四纪研究,26(5):678-693.[An Z S,Zhang P Z,Wang E Q,et al.2006.Changes of the monsoon-arid environment in China and growth of the Tibetan Plateau since the Miocene[J].Quaternary Sciences,26(5):678-693.]
    白虎志,董文杰,马振锋.2004.青藏高原及邻近地区的气候特征[J].高原气象,23(6):890-897.[Bai H Z,Dong W J,Ma Z F.2004.Climatic characteristics of Qinghai-Xizang Plateau and its surrounding[J].Plateau Meteorology,23(6):890-897.]
    蔡演军,彭子成,安芷生,等.2001.贵州七星洞全新世石笋的氧同位素记录及其指示的季风气候变化[J].科学通报,46(16):1398-1402.[Cai Y J,Peng Z C,An Z S,et al.2001.Oxygen isotope records of Holocene stalagmites in Guizhou Qixing cave and its indicated monsoon climate change[J].Chinese Science Bulletin,46(16):1398-1402.]
    方小敏.2017.青藏高原隆升阶段性[J].科技导报,35(6):42-50.[Fang X M.2017.Phased uplift of the Tibetan Plateau[J].Science&Technology review,35(6):42-50.]
    郭正堂,彭淑贞,郝青振,等.1999.晚第三纪中国西北干旱化的发展及其与北极冰盖形成演化和青藏高原隆升的关系[J].第四纪研究,19(6):556-567.[Guo Z T,Peng S Z,Hao Q Z,et al.1999.Late Tertiary development of aridification in northwestern China:Link with the Arctic ice-sheet formation and Tibetan uplifts[J].Quaternary Sciences,19(6):556-567.]
    郭正堂.2017.黄土高原见证季风和荒漠的由来[J].中国科学:地球科学,47(4):421-437.[Guo Z T.2017.The Loess Plateau witnesses the origin of the monsoon and desert[J].Scientia Sinica Terrae,47(4):421-437.]
    洪冰,林庆华,洪业汤,等.2004.全新世青藏高原东部西南季风的演变[J].地球与环境,32(1):42-49.[Hong B,Lin Q H,Hong Y T,et al.2004.Evolution of southwest monsoon in the eastern part of Qinghai-Tibet Plateau during Holocene[J].Earth and Environment,32(1):42-49.]
    胡菡,王建力.2015.云南地区大气降水中氢氧同位素特征及水汽来源分析[J].西南师范大学学报(自然科学版),40(5):142-149.[Hu H,Wang J L.2015.On characteristics of hydrogen and oxygen isotope in precipitation in Yunnan and analysis of moisture sources[J].Journal of Southwest China Normal University(Natural Science Edition),40(5):142-149.]
    华明.2003.青藏高原热状况对夏季西南地区气候影响的分析及模拟[J].高原气象,22(S1):152-156.[Hua M.2003.Analysis and simulation study on the influence of heat condition over Qinghai-Xizang Plateau on climate over southwest China[J].Plateau Meteorology,22(S1):152-156.]
    黄翡,宋之琛.2002.依据Altingiaceae和Juglandaceae孢粉化石探讨我国第三纪植物群及气候特征[J].古生物学报,41(2):232-240.[Huang F,Song Z C.2002.Tertiary flora and climate in China inferred from fossil records of Altingiaceae and Juglandaceae[J].Acta Palaeontologica Sinica,41(2):232-240.]
    黄荣辉,顾雷,陈际龙,等.2008.东亚季风系统的时空变化及其对我国气候异常影响的最近研究进展[J].大气科学,32(4):691-719.[Huang R H,Gu L,Chen J L,et al.2008.Recent progresses in studies of the temporalspatial variations of the East Asian monsoon system and their impacts on climate anomalies in China[J].Chinese Journal of Atmospheric Sciences,32(4):691-719.]
    李吉均,张林源,邓养鑫,等.1983.庐山第四纪环境演变和地貌发育问题[J].中国科学(B辑),13(8):734-745.[Li J J,Zhang L Y,Deng Y X,et al.1983.The evolution of Quaternary environment and landform development in Lushan Mountain[J].Science in China(Series B),13(8):734-745.]
    李吉均.1999.青藏高原的地貌演化与亚洲季风[J].海洋地质与第四纪地质,19(1):1-11.[Li J J.1999.Studies on the geomorphological evolution of the Qinghai-Xizang(Tibetan)Plateau and Asian monsoon[J].Marine Geology&Quaternary Geology,19(1):1-11.]
    刘东生,郑绵平,郭正堂.1998.亚洲季风系统的起源和发展及其与两极冰盖和区域构造运动的时代耦合性[J].第四纪研究,(3):194-204.[Liu T S,Zheng M P,Guo Z T.1998.Initiation and evolution of the Asian monsoon system timely coupled with the ice-sheet growth and the tectonic movements in Asia[J].Quaternary Sciences,(3):194-204.]
    刘晓东,Dong B W.2013.青藏高原隆升对亚洲季风-干旱环境演化的影响[J].科学通报,58(28/29):2906-2919.[Liu X D,Dong B W.2013.Influence of the Tibetan Plateau uplift on the Asian monsoon-arid environment evolution[J].Chinese Science Bulletin,58(28/29):2906-2919.]
    刘晓东,焦彦军.2000.东亚季风气候对青藏高原隆升的敏感性研究[J].大气科学,24(5):593-607.[Liu X D,Jiao Y J.2000.Sensitivity of the East Asian monsoon climate to the Tibetan Plateau uplift[J].Journal of Atmospheric Sciences,24(5):593-607.]
    刘晓东.1999.青藏高原隆升对亚洲季风形成和全球气候与环境变化的影响[J].高原气象,18(3):321-332.[Liu X D.1999.Influences of Qinghai-Xizang(Tibet)Plateau uplift on the atmospheric circulation,global climate and environment changes[J].Plateau Meteorology,18(3):321-332.]
    柳鉴容,宋献方,袁国富,等.2007.我国南部夏季季风降水水汽来源的稳定同位素证据[J].自然资源学报,22(6):1004-1012.[Liu J R,Song X F,Yuan G F,et al.2007.Stable isotope evidence of vapor sources in summer monsoonal precipitation over southern China[J].Journal of Natural Resources,22(6):1004-1012.]
    罗华.2015.青藏高原对气候的影响[J].青海科技,22(3):46-48.[Luo H.2015.Impacts of Qinghai/Tibet Plateau on climate change[J].Qinghai Science and Technology,22(3):46-48.]
    彭子成,张兆峰,蔡演军,等.2002.贵州七星洞晚更新世晚期石笋的古气候环境记录[J].第四纪研究,22(3):273-282.[Peng Z C,Zhang Z F,Cai Y J,et al.2002.The paleoclimatic records from the late Pleistocene stalagmite in Guizhou Qixing cave[J].Quaternary Sciences,22(3):273-282.]
    齐冬梅,李跃清,陈永仁,等.2016.2010年东亚冬季风月内尺度振荡特征及其与西南地区冬季气温的关系[J].热带气象学报,32(1):19-30.[Qi D M,Li Y Q,Chen Y R,et al.2016.Submonthly timescales oscillation characteristics of the East Asian winter monsoon and its effect on the temperature in southwest China-a case study in 2010[J].Journal of Tropical Meteorology,32(1):19-30.]
    齐冬梅,李跃清.2007.高原季风研究主要进展及其科学意义[J].干旱气象,25(4):74-79.[Qi D M,Li Y Q.2007.The major progress of the plateau monsoon study and its scientific significance[J].Arid Meteorology,25(4):74-79.]
    乔钰,周顺武,马悦,等.2014.青藏高原的动力作用及其对中国天气气候的影响[J].气象科技,42(6):1039-1046.[Qiao Y,Zhou S W,Ma Y,et al.2014.Dynamic effect of Tibetan Plateau and its impact on weather and climate in China[J].Meteorological Science and Technology,42(6):1039-1046.]
    施雅风,汤懋苍,马玉贞.1998.青藏高原二期隆升与亚洲季风孕育关系探讨[J].中国科学(D辑),28(3):263-271.[Shi Y F,Tang M C,Ma Y Z.1998.A study on the relationship between the second stage uplift of Tibetan Plateau and Asian monsoon[J].Science in China(Series D),28(3):263-271.]
    宋静,刘屹岷.2014.近期青藏高原对亚洲气候影响的动力学研究进展[J].热带气象学报,30(2):201-209.[Song J,Liu Y M.2014.Dynamics study on recent influence of Tibetan Plateau on Asian climate[J].Journal of Tropical Meteorology,30(2):201-209.]
    宋之琛,王伟铭,毛方园.2008.依据孢粉资料探讨我国西北地区第三纪时期的干旱化及其与季风的关系[J].古生物学报,47(3):265-272.[Song Z C,Wang W M,Mao F Y.2008.Palynological implications for relationship between aridification and monsoon climate in the Tertiary of NW China[J].Acta Palaeontologica Sinica,47(3):265-272.]
    汤懋苍,刘晓东.1995.一个新的划分第四纪的标志--高原季风演变的地质环境后果[J].第四纪研究,15(1):82-88.[Tang M C,Liu X D.1995.A new mark for delimitation of Quaternary:Stable appearance of Plateau Monsoon and its environmental effects[J].Quaternary Sciences,15(1):82-88.]
    汤憋苍.1998.青藏高原季风的形成、演化及振荡特性[J].甘肃气象,16(1):1-14.[Tang M C.1998.Formation,evolution and oscillation characteristics of the monsoon over the Tibetan Plateau[J].Gansu Meteorology,16(1):1-14.]
    汪品先.2009.全球季风的地质演变[J].科学通报,54(5):535-556.[Wang P X.2009.Global monsoon in a geological perspective[J].Chinese Science Bulletin,54(5):535-556.]
    王颖,李栋梁.2015.变暖背景下青藏高原夏季风变异及其对中国西南气候的影响[J].气象学报,73(5):910-924.[Wang Y,Li D L.2015.Variation of the Tibetan Plateau summer monsoon under the background of global warming and its impact on the climate in southwestern China[J].Journal of Meteorological Research,73(5):910-924.]
    王同美,吴国雄,万日金.2008.青藏高原的热力和动力作用对亚洲季风区环流的影响[J].高原气象,27(1):1-9.[Wang T M,Wu G X,Wan R J.2008.Influence of the mechanical and thermal forcing of Tibetan Plateau on the circulation of the Asian summer monsoon area[J].Plateau Meteorology,27(1):1-9.]
    韦小雪,周渭,黄远盼,等.2015.东亚季风对西南地区秋冬春连旱的影响分析[J].安徽农业科学,43(28):154-156.[Wei X X,Zhou W,Huang Y P,et al.2015.Analysis on the influence of East Asian monsoon on the drought in autumn,winter and spring in southwest China[J].Journal of Anhui Agricultural Sciences,43(28):154-156.]
    吴国雄,刘屹岷,刘新,等.2005.青藏高原加热如何影响亚洲夏季的气候格局[J].大气科学,29(1):47-56.[Wu G X,Liu Y M,Liu X,et al.2005.How the heating over the Tibetan Plateau affects the Asian climate in summer[J].Chinese Journal of Atmospheric Sciences,29(1):47-56.]
    徐嘉行,冯国柱.1982.西南地区夏季风定义与特征的分析[J].云南大学学报,(3):1-10.[Xu J X,Feng G Z.1982.Analysis of the definition and characteristics of summer wind in southwestern China[J].Journal of Yunnan University,(3):1-10.]
    薛滨,金章东,强小科,等.2016.西南季风演化与南半球气候的联系[J].科技资讯,14(19):174-175.[Xue B,Jin Z D,Qiang X K,et al.2016.The southwest monsoon:evolution and its link with the southern Hemisphere[J].Science and Technology Information,14(19):174-175.]
    张克信,王国灿,洪汉烈,等.2013.青藏高原新生代隆升研究现状[J].地质通报,32(1):1-18.[Zhang K X,Wang G C,Hong H L,et al.2013.The study of the Cenozoic uplift in the Tibetan Plateau:a review[J].Geological Bulletin of China,32(1):1-18.]
    张林源.1981.青藏高原上升对我国第四纪环境演变的影响[J].兰州大学学报,(3):142-155.[Zhang L Y.1981.The influence of the uplift of Qinghai-Xizang Plateau on the Quaternary environmental evolution in China[J].Journal of Lanzhou University,(3):142-155.]
    张林源.1995.青藏高原形成过程与我国新生代气候变化阶段的划分[M].北京:科学出版社:267-280.[Zhang L Y.1995.Formation process of Qinghai-Tibet Plateau and division of Cenozoic climate change in China[M].Beijing:Science Press:267-280.]
    郑度,姚檀栋.2006.青藏高原隆升及其环境效应[J].地球科学进展,21(5):451-458.[Zheng D,Yao T D.2006.Uplifting of Tibetan Plateau with its environmental effects[J].Advances in Earth Science,21(5):451-458.]
    周明煜,徐祥德,卞林根,等.2000.青藏高原大气边界层观测分析与动力学研究[M].北京:气象出版社:197.[Zhou M Y,Xu X D,Bian L G,et al.2000.Observation analysis and dynamic study on the atmospheric boundary layer in the Qinghai-Xizang Plateau[M].Beijing:Meteorology Press:197.]
    Boos W R,Kuang Z M.2010.Dominant control of the South Asian monsoon by orographic insulation versus plateau heating[J].Nature,436(7278):218-223.
    Gettelman A,Kinnison D,Dunkerton T,et al.2004.Impact of monsoon circulations on the upper troposphere and lower stratosphere[J].Journal of Geophysical Research,109(D22):51-67.
    Gupta S M.2010.Indian monsoon cycles through the last twelve million years[J].Earth Science India,3:248-280.
    Kutzbach J E,Guetter P J.1989.Sensitivity of climate to late Cenozoic uplift in southern Asia and the American west’numerical experiments[J].Journal of Geophysical Research,19(15):18393-18407.
    Liu X D,Dong B W,Yin Z Y,et al.2017.Continental drift and plateau uplift control origination and evolution of Asian and Australian monsoons[J].Scientific Reports,7.DOI:10.1038/srep40344.
    Ma Y,Zhong L,Su Z,et al.2006.Determination of regional distributions and seasonal variations of land surface heat fluxes from Landsat-7 Enhanced Thematic Mapper data over the central Tibetan Plateau area[J].Journal of Geophysical Research-Atmospheres,111(D10):1843-1852.
    Manabe S,Terpstra T B.1974.The effects of mountains on the general circulation of the atmosphere as identified by numerical experiments[J].Journal of the Atmospheric Sciences,31(1):3-42.
    Molnar P,Boos W R,Battisti D S.2010.Orographic controls on climate and paleoclimate of Asia:Thermal and mechanical roles for the Tibetan Plateau[J].Annual Review of Earth and Planetary Sciences,38:77-102.
    Wu G X,Liu Y M,Dong B W,et al.2012.Revisiting Asian monsoon formation and change associated with Tibetan Plateau forcingⅠ.Formation[J].Climate Dynamics,39(5):1169-1181.
    Wu G X,Liu Y M,Wang T M,et al.2007.The influence of mechanical and thermal forcing by the Tibetan Plateau on Asian climate[J].Journal of Hydrometeorology,8:770-789.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700