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宁夏地表湿润状况及极端干湿事件演变规律
引用本文:郑广芬,陈晓光,赵光平,纳丽,孙银川. 宁夏地表湿润状况及极端干湿事件演变规律[J]. 中国沙漠, 2007, 27(2): 326-330
作者姓名:郑广芬  陈晓光  赵光平  纳丽  孙银川
作者单位:1.宁夏气象防灾减灾重点实验室, 宁夏 银川750002; 2.宁夏气象台, 宁夏 银川750002
摘    要:利用宁夏1961—2004年月平均气温、月降水量资料,计算了地表湿润指数,以此为基础对宁夏地表湿润状况及极端干湿事件的分布特征进行了较为深入的研究。结果表明:近40多年来,宁夏大致经历了冷湿期、冷干期、暖干期;自20世纪60年代以来,宁夏年极端干旱频率有增加的趋势,极端湿年高频区逐渐缩小; 80年代以来,宁夏极端干旱年事件高频区明显扩大;不同气候型态下,极端干湿事件频率具有明显差异,冷干期极端干旱事件最多,极端湿润事件最少,冷湿期极端干旱频率最小,极端湿润频率最大。

关 键 词:地表湿润指数  气候型态  极端干湿事件  演变规律  宁夏  
文章编号:1000-694X(2007)02-0326-05
收稿时间:2005-09-14
修稿时间:2005-10-08

Evolvement Law of Surface Humid Status and Extreme Dry/Wet Events in Ningxia
ZHENG Guang-fen,CHEN Xiao-guang,ZHAO Guang-ping,NA Li,SUN Yin-chuan. Evolvement Law of Surface Humid Status and Extreme Dry/Wet Events in Ningxia[J]. ournal of Desert Research, 2007, 27(2): 326-330
Authors:ZHENG Guang-fen  CHEN Xiao-guang  ZHAO Guang-ping  NA Li  SUN Yin-chuan
Affiliation:1.Ningxia Key Laboratory for Meteorological Disaster Prevention and Reduction, Yinchuan750002, China; 2.Ningxia Meteorological Observatory, Yinchuan 750002, China
Abstract:Using the monthly precipitation and the monthly mean temperature data in 1961-2004 from 20 meteorological stations,we calculated the surface humid indexes throughout Ningxia province.According to the indexes,we further studied the distribution characteristics of the surface humid status and the extreme dry/wet events in Ningxia.The results indicated that the climate of Ningxia has undergone the cold-wet period,the cold-dry period and the warm-dry period in recent 40 years;the extreme arid event frequency appeared increasing trend;the high-frequency area of extreme wet years shrank gradually since 1960s,whereas the highfrequency area of extreme dry years obviously expanded since 1980s.The frequency of extreme dry/wet events in Ningxia showed obvious differences among different climate types: more extreme dry events or less extreme wet events in cold-dry period,smaller arid frequency or larger humid frequency in cold-wet period.
Keywords:surface humid index   climate type   extreme dry/wet events   evolvement law   Ningxia
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