亚澳季风区水汽收支时空分布特征
THE TEMPORAL AND SPATIAL CHARACTERISTICS OF MOISTURE BUDGETS OVER ASIAN AND AUSTRALIAN MONSOON REGIONS
-
摘要: 用1980~1989年NCEP/NCAR再分析资料计算了亚澳季风区视水汽汇并分析了其水汽收支时空分布特征。结果表明,该研究范围水汽收支的典型空间分布型为南北型,即南半球澳大利亚季风区与北半球亚洲季风区相反的分布形势,而且这种分布形势有明显的季节变化。冬季北半球亚洲季风区为水汽源,110~135E之间大陆桥附近、80E附近及40~50E之间的三支越赤道水汽输送通道将北半球水汽输送到南半球澳大利亚季风区及南印度洋,成为水汽汇,夏季南半球澳大利亚季风区和南印度洋为水汽源,上述三支越赤道水汽输送通道实现与夏季反向的水汽输送,将水汽由南半球输送到北半球亚洲季风区,此时亚洲季风区为水汽汇。春季和秋季赤道辐合带为主要的水汽汇,亚澳季风区无明显越赤道水汽输送。Abstract: The apparent moisture sink and water vapor transport flux are calculated by using NCAR/NCEP reanalyzed daily data for water vapor and wind fields at various levels from 1980 to 1989, and with the aid of EOF analysis method, the temporal and spatial characteristics of moisture budgets over Asian and Australian monsoon regions are studied.The results show that there is apparent seasonal transition of moisture sink and water vapor transport between Asian monsoon region and Australian monsoon region. In winter, Asian monsoon region is a moisture source, in which three cross-equatorial water vapor transport channels in the "Continent bridge", 80 E and 40~50 E transport the water vapor to the Australian monsoon region and south Indian Ocean which are moisture sinks. In summer, Australian monsoon region and south Indian Ocean are moisture sources, the former three cross-equatorial water vapor transport channels transport the water vapor to the Asian monsoon region which is a moisture sink. In spring and autumn, ITCZ is the main moisture sink, there is no apparent water vapor transport between Asian monsoon region and Australian monsoon region.
-
[1] 徐淑英. 我国水汽输送和平衡 [J]. 气象学报,1958,29: 33-43. [2] 谢义炳, 戴武杰. 中国东部地区夏季水汽输送个例计算 [J]. 气象学报,1959,30: 173-185. [3] 陶杰,陈久康. 江淮梅雨的水汽源地及输送 [J]. 南京气象学院学报,1994,17: 443-447. [4] 吕梅, 成新喜, 陈中一, 等. 1994年华南暴雨期间夏季风的特征及其对水汽的输送 [J]. 热带气象学报,1998,14: 135-141. [5] 周军, 薛宇峰, 刘宣飞. 1994年8月亚洲季风区水汽的源汇分布和输送 [J]. 热带气象学报,1998,14: 91-96. [6] LI W P. Moisture flux and water balance over the South China Sea during late boreal spring and summer [J]. Theor Appl Climatol, 1999, 64: 179-187. [7] 黄荣辉, 张振洲, 黄刚, 等. 夏季东亚季风区水汽输送特征及其与南亚季风区水汽输送特征的差别 [J]. 大气科学,1998,22: 460-469. [8] 伊兰,陶诗言. 定常波和瞬变波在亚洲季风区大气水分循环中的作用 [J]. 气象学报,1997,55: 532-544. [9] YASUNARI T, YATAGAI A, MASUDA K. Time-space characteristics of atmospheric water balance in monsoon areasbased on ECMWF reanalysis data [M], Proceedings of the Second International Conference on Reanalysis, Reading, UK, August 23-27, 1999, WMO. [10] YANAI M S. ESBENSEN, CHU J H. Determination of bulk properties of tropical cloud clusters from large-scale heat andmoisture budgets [J]. J Atmos Sci, 1973, 30: 611-627. -

计量
- 文章访问数: 826
- HTML全文浏览量: 0
- PDF下载量: 1270
- 被引次数: 0