2.5Ma以来柴达木盆地的气候干湿变化特征及其原因

王建, 黄巧华, 柏春广, 刘泽纯

地理科学 ›› 2002, Vol. 22 ›› Issue (1) : 34-38.

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地理科学 ›› 2002, Vol. 22 ›› Issue (1) : 34-38. DOI: 10.13249/j.cnki.sgs.2002.01.34
论文

2.5Ma以来柴达木盆地的气候干湿变化特征及其原因

  • 王建, 黄巧华, 柏春广, 刘泽纯
作者信息 +

Tendency of the Quaternary Climatic Change in Qaidam Basin and Its Causal Mechanism

  • WANG Jian, HUANG Qiao-hua, LIU Ze-chun
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文章历史 +

摘要

长期以来,一直认为柴达木盆地第四纪气候在波动中向干旱方向发展.原因是青藏高原的隆升阻挡了来自印度洋、孟加拉湾的水汽.然而,来自柴达木盆地新的证据表明,柴达木盆地第四纪气候演变的总体趋势是冰期越来越干燥,间冰期干燥程度却存在减弱的趋势.并且这种变化是呈阶段性的.最明显的阶段划分应在0.8~0.6Ma前后.这种现象可以用青藏高原的隆升做出比较合理的解释:青藏高原的隆升,不仅通过增强冬季亚洲高压(西伯利亚高压)使冬季风增强,使东亚季风区冰期气候更加干燥寒冷,而且还可以通过增强夏季亚洲低压(印度低压),使夏季风增强、间冰期气候更加温暖湿润,从而使得中国季风区冰期-间冰期的气候变差增大.可是,柴达木盆地位于青藏高原北缘,我国西北内陆区受夏季风影响较弱,间冰期或者湿润期湿润程度的增大如何与高原隆升和季风系统的调整相联系,还有待于进一步的研究.

Abstract

It has been long believed that the Quaternary climate in Qaidam Basin evolved towards dry. However, evidence from lithofacies, sporo pollen, and organic carbon content has revealed that the general evolutionary trend of Quaternary climate in Qaidam Basin, i.e., glacial climate became drier and interglacial climate became wetter at about 0.8-0.6 Ma B.P. This phenomenon can probably be attributed to the uplift of Tibetan Plateau. The uplift of Tibetan Plateau made both the Asian High (Siberia High) and the Asian Low (India Low) strengthened, which consequently intensified the winter and summer monsoons, giving rise to much drier and colder glacial climate and much wetter and warmer interglacial climate in the East Asian monsoon region. The Quaternary climatic evolution of Qaidam Basin is probably influenced by Asian monsoon circulation as well. However, how to relate the uplift of the Tibetan Plateau and the intensification of the monsoon with the increase of the amplitudes of the humidity variations in Qaidamu Basin leave unsolved.

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王建, 黄巧华, 柏春广, 刘泽纯. 2.5Ma以来柴达木盆地的气候干湿变化特征及其原因[J]. 地理科学, 2002, 22(1): 34-38 https://doi.org/10.13249/j.cnki.sgs.2002.01.34
WANG Jian, HUANG Qiao-hua, LIU Ze-chun. Tendency of the Quaternary Climatic Change in Qaidam Basin and Its Causal Mechanism[J]. SCIENTIA GEOGRAPHICA SINICA, 2002, 22(1): 34-38 https://doi.org/10.13249/j.cnki.sgs.2002.01.34
中图分类号: P534.63/P532   

参考文献

[1] 沈振枢,程果,乐昌硕,刘淑琴.柴达木盆地第四纪含盐地层划分与沉积环境[M].北京:地质出版社,1993.
[2] 阎顺.新疆第四纪孢粉组合特征及植物演替[J].干旱区地理,1991,(2):1~8.
[3] 王瑜,宋长青,孙湘君.内蒙古中部表土花粉研究[J].植物学报,1996,38(11):902~909.
[4] EL-Moslinmny A. The ecological significance of common nonarboreal pollen example from dryland of Middle East[J]. Rev.Palaeobot. Palyn., 1990, 64:343 - 350.
[5] GasseF, MArnold, J CFontes, M Fort E. Gibert, A. Huc, Li Bingyuan, Li yuanfang, Liu Qing, F. Mellerest, E. Van Campo, Wang Fubao & Zhang Qingsong. A 13, 000 - year climate record from western Tibet[J]. Nature, 1991,353(24): 2301 -2304.
[6] 王建,席萍,刘泽纯,汪永进.柴达木盆地西部新生代气候与地形演变[J].地质论评,1996,42(2):166~173.
[7] 沈振枢,童国榜,张俊牌,于淑风,李银锣.青海柴达木盆地上新世以来的地质环境与成盐期[J]海洋地质与第四纪地质,1990,10(4):89~99.
[8] Wang Jian, Wang Yongjin, Liu Zechun, Li Jianqing, Xi Ping, Cenozoic environmental evolution of the Qaidam Basin and its implications for the uplift of the Tibetan Plateau and the drying of the central Asia[J]. Palaeogeography, Palaeoclimatology,Palaeoecology, 1999, 152: 37-47.
[9] 黄麒,陈克造.七十三万年来柴达木盆地察尔汗盐湖古气候波动的形式[J].第四纪研究,1990,(3):205~212
[10] 刘泽纯,孙世英,汪永进,等.柴达木盆地中部地区第四纪地层、沉积环境及其天然气资源分布的关系[A]刘泽纯(主编).第四纪沉积与环境变迁[C].南京:东南文化杂志社,1991.1~26.
[11] 安芷生,王苏民,吴锡浩,等.中国黄土高原的风积证据:晚新生代北半球大冰期开始及青藏高原的隆升驱动[J].中国科学(D缉),1998,28(6):481 490.
[12] 郭正堂,刘东生,N Fedoroff,安芷生.约0 85Ma前后黄土高原区季风强度的变化[J].科学通报,1993,38(2):143~146.
[13] AnZS, LiuTS, LuYC, etal. The long term paleomonsoon variation recorded by the loess - paleosol sequence in central China[J]. Quaternary International, 1990, 7/8: 91 - 95.
[14] 韩家,刘东生,R Paepe,R E Vandenberghe马兰黄土与离石黄土的磁学性质[J].第四纪研究,1991,4:310~325
[15] 陈发虎,张维信.甘青地区的黄土地层学与第四纪冰川问题[M].北京:科学出版社,1993.80~85.
[16] 杨达源.中国东部的第四纪风尘堆积与季风变迁[J].第四纪研究,1991,(4):354 359.
[17] Trenberth K E, SHYH- CHIN CHEN. Planetary waves kinematically Forced by Himalayan orography[J]. Journal of Atmospheric Sciences, 1988, 45(20):2934 - 2948.
[18] Hahn, D. G. and S. Manabe. The role of Mountains in the South Asian Monsoon Circulation[J]. Journal of Atmospheric Sciences, 1975, 32:1515 - 1535.
[19] 陈隆勋,刘骥平,周秀骥,汪品先青藏高原隆起及海陆分布变化对亚洲大陆气候的影响[J]第四纪研究,1999,(4):314~329.
[20] 施雅凤.第四纪中期青藏高原冰冻圈的演化及其与全球变化的联系[J].冰川冻土,1998,20(3):197 208
[21] 陈克造,J M Bowler.柴达木盆地察尔汗盐湖沉积特征及其古气候演化的初步研究[J].中国科学,1985,(5):463~473

基金

国家重点基础研究专项(KZ-951-A1-204)和教育部骨干教师资助计划
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