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内蒙古翁牛特旗46年气候变化规律分析
引用本文:王红梅,骆永明.内蒙古翁牛特旗46年气候变化规律分析[J].干旱区资源与环境,2005,19(6):58-61.
作者姓名:王红梅  骆永明
作者单位:中国科学院沈阳应用生态研究所,沈阳,110016
基金项目:国家“十五”攻关课题:科尔沁沙地退化草地植被恢复重建技术示范区.
摘    要:本文分析了翁牛特旗46年(1957-2002年)逐月降水量和平均气温。结果表明:气温呈非连续增暖趋势,其中年平均气温线性变化率为0.39℃.(10a)-1,年平均最高气温线性变化率为0.19℃.(10a)-1,年平均最低气温线性变化率为0.93℃.(10a)-1;最低气温上升速率是最高气温的1-4倍,气温日较差显著减小。上世纪60年代较50年代有所增暖,80年代后期开始明显升温,90年代是近50年来最暖的10年。1987年开始转暖,其后呈连续性增暖趋势,1998年为1957年以来的最暖年,年平均气温7.7℃,高于1957年2.9℃。降水以平均5-7年的周期变化,并从50年代到90年代呈连续性递减趋势,线性变化率为-11.7mm.(10a)-1,90年代较50年代年降水减少了39.4mm。

关 键 词:气温  降水  年代  线性变化率
文章编号:1003-7578(2005)06-058-04
收稿时间:2004-10-15
修稿时间:2004年10月15

Climate Changes in a Period of 46 Years in Wengniute Banner, Inner Mongolia
WANG Hong-mei,LUO Yong-ming.Climate Changes in a Period of 46 Years in Wengniute Banner, Inner Mongolia[J].Journal of Arid Land Resources and Environment,2005,19(6):58-61.
Authors:WANG Hong-mei  LUO Yong-ming
Abstract:In this paper,the rainfall and the average temperature of every month of 46 years(from 1957 to 2002) in Wengniute were analyzed.The temperature was becoming warmer with fluctuations,and linear-change-rate of annual average temperature was 0.39℃·(10a)~(-1),that of annual average maximum temperature 0.19℃·(10a)~(-1),and thatof annual average minimum temperature was 0.93℃·(10a)~(-1).The increased rate of annual minimum temperaturewas 1-4 times of that of annual maximum temperature,and the daily temperature difference decreased obviously.1960s was slightly warmer than 1950s.The temperature rose obviously in late 1980s,and 1990s was the warmestperiod during the past 50 years.The climate began to change warmer in 1987,and later on,average temperatureincreased continuously.1998 was the warmest year in the period from 1957 to 2002,the annual temperature was 7.7℃,2.9℃ higherthan that of 1957.The rainfall changed periodically with a period of 5-7 years,and a continuous decreasing tendency,with a linear-change-rate-11.7 mm·(10a)~(-1),during 1950s-1990s could be detected.Compared with that of 1950s,the annual rainfall of 1990s decreased by 39.4mm.
Keywords:temperature  rainfall  decade  linear-change-rate
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