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Upper-air temperature change trends above arid region of Northwest China during 1960-2009

机译:1960-2009年中国西北干旱区上空气温变化趋势

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摘要

This study summarized upper-air temperature change trends based on the monthly datasets of 14 sounding stations in the arid region of Northwest China during 1960-2009. Over the investigated period, the change in upper-air temperature measured at eight standard pressure levels shows that an obvious warming at 850-400 hPa, which decreases with altitude, changes to an apparent cooling at 300-50 hPa. There is a positive correlation between the surface and 850-300-hPa temperatures, but a negative correlation between the surface and 200-50-hPa temperatures. Over the full 1960-2009 record, patterns of statistically significant mid-lower tropospheric warming and upper tropospheric and mid-lower stratospheric cooling are clearly evident. Also, the annual temperature cycle indicates that the peak temperature shifts from July in the troposphere to February in the mid-lower stratosphere, suggesting the importance of seasonal trend analysis. We found that the wanning in the mid-lower troposphere is more pronounced during the summer, autumn, and winter, whereas the cooling in the upper troposphere and mid-lower stratosphere is larger during the summer and autumn. Furthermore, there are also many regional differences in the upper-air temperature change, regardless of both season and layer.
机译:本文基于1960-2009年中国西北干旱地区14个测深站的月度数据,总结了高空温度变化趋势。在研究期间,在八个标准压力水平下测得的高空温度变化表明,在850-400 hPa处有明显的变暖,随海拔升高而降低,在300-50 hPa处有明显的降温。表面温度与850-300-hPa温度呈正相关,而表面温度与200-50-hPa之间呈负相关。在整个1960-2009年的记录中,对流层中低-中层变暖和对流层中高和平流层中-上层降温具有统计学意义。此外,年度温度周期表明对流层的峰值温度从对流层7月到平流层中下部的2月变化,这表明了季节性趋势分析的重要性。我们发现,在夏季,秋季和冬季,对流层中低层的减弱更为明显,而在夏季和秋季,对流层上层和中低层平流层的降温更大。此外,无论季节和季节如何,高空温度变化也存在许多区域差异。

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  • 来源
    《Theoretical and applied climatology》 |2015年第2期|239-248|共10页
  • 作者单位

    Key Laboratory of GIScience of the Ministry of Education, East China Normal University, Shanghai 200241, China;

    State Key Laboratory of Desert and Oasis Ecology, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi 830011, China;

    Key Laboratory of GIScience of the Ministry of Education, East China Normal University, Shanghai 200241, China;

    Key Laboratory of GIScience of the Ministry of Education, East China Normal University, Shanghai 200241, China;

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