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全球变暖背景下青藏高原夏季气温在对流层上下反相变化及其与降水和环流的关系

朱丽华 范广洲 华维

大气科学Issue(6):1250-1262,13.
大气科学Issue(6):1250-1262,13.DOI:10.3878/j.issn.1006-9895.1503.14249

全球变暖背景下青藏高原夏季气温在对流层上下反相变化及其与降水和环流的关系

Reversed Phase Change of the Temperature in the Upper and Lower Troposphere over the Tibetan Plateau in Summer and Its Relationships to Precipitation and Atmospheric Circulation under the Background of Global Warming

朱丽华 1范广洲 1华维2

作者信息

  • 1. 成都信息工程大学大气科学学院/高原大气与环境四川省重点实验室,成都610225
  • 2. 南京信息工程大学气象灾害预报预警与评估协同创新中心,南京210044
  • 折叠

摘要

Abstract

Using linear-trend estimates, empirical orthogonal function (EOF) analysis, correlation and composite analysis, the vertical variation of temperature in the troposphere over the Tibetan Plateau in summer and its relationships to precipitation and atmospheric circulation are examined, based on monthly NCEP/NCAR (National Centers for Environmental Prediction/National Center for Atmospheric Research) reanalysis data and precipitation data from 596 stations in China. The characteristics of the vertical variation of temperature reveal that the temperature in the lower to middle-upper troposphere over the Tibetan Plateau in summer shows a significant warming trend since 1971, while the temperature in the high troposphere shows a significant cooling trend. In terms of interannual and interdecadal the temperature in the lower to middle-upper troposphere and the high troposphere are negatively correlated, and all have the cycles of 2–4 and 8–13 years. The first EOF mode of the vertical temperature anomaly averaged along 27.5°N–40°N over the Tibetan Plateau in summer shows a reversed phase change of an increase in the lower to middle-upper troposphere and a decrease in the high troposphere. Its time coefficient shows a long-term positive trend, and there is abrupt change in 1978 and 1994. The relationships between the interannual and interdecadal reversed phase change of temperature, i.e., an increase in the lower to middle-upper troposphere and a decrease in the high troposphere over the Tibetan Plateau in summer, and precipitation in China in summer, are explored. When the temperature over the Tibetan Plateau increases in the lower to middle-upper troposphere and decreases in the high troposphere, summer rainfall in China shows a southern type pattern, in which more precipitation in the regions south of the Yangtze River and southern China and less precipitation in the northeast of China are the main distributional characteristics. In addition, less precipitation occurs in the local areas of the Yangtze River Basin and some areas of northwestern China, while more precipitation occurs in the local areas of the eastern part of North China, the central and eastern regions of the Tibetan Plateau, and northwest Xinjiang. The abnormal interdecadal distribution of precipitation is more significant than the interannual distribution. Analysis of the circulation reveals that when the temperature over the Tibetan Plateau increases in the lower to middle–upper troposphere and decreases in the high troposphere, there is abnormally high pressure in middle and high latitude regions of East Asia, while in middle and low latitude areas there is abnormally low pressure. Meanwhile, a relatively significant relationship is found between circulation and precipitation.

关键词

青藏高原/气温/反相变化/降水/大气环流

Key words

Tibetan Plateau/Temperature/Reversed phase change/Precipitation/Atmospheric circulation

分类

天文与地球科学

引用本文复制引用

朱丽华,范广洲,华维..全球变暖背景下青藏高原夏季气温在对流层上下反相变化及其与降水和环流的关系[J].大气科学,2015,(6):1250-1262,13.

基金项目

国家自然科学基金项目41275079、41405069,四川省青年科技基金项目2012JQ0062,四川省教育厅一般项目15ZB0170 ()

大气科学

OA北大核心CSCDCSTPCD

1006-9895

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