1. 陕西师范大学地理科学与旅游学院,陕西,西安,710119
2.
纸质出版日期:2017,
网络出版日期:2017-11-25,
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赵芮芮, 殷淑燕, 王水霞. 1961-2014年华北平原二十四节气气温变化特征[J]. 中山大学学报(自然科学版)(中英文), 2017,56(6):38-47.
ZHAO Ruirui, YIN Shuyan, WANG Shuixia. Air temperature variation analysis of the twenty-four solar terms in the North China Plain from 1961-2014[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2017,56(6):38-47.
赵芮芮, 殷淑燕, 王水霞. 1961-2014年华北平原二十四节气气温变化特征[J]. 中山大学学报(自然科学版)(中英文), 2017,56(6):38-47. DOI:
ZHAO Ruirui, YIN Shuyan, WANG Shuixia. Air temperature variation analysis of the twenty-four solar terms in the North China Plain from 1961-2014[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2017,56(6):38-47. DOI:
利用华北平原53个气象站点1961-2014年逐日气温资料,采用趋势特征指数、MK突变检验、滑动T检验和空间插值等方法,对华北平原二十四节气气温变化特征进行了分析。结果发现:① 二十四节气气温呈现出准正态单峰型特点,一年中平均气温最高的节气是大暑(30.4 ℃),最低的节气是大寒(-7.5 ℃)。清明和立冬节气前后气温波动最大。二十四节气中所有节气平均气温都呈上升趋势,其中春季型节气增温最为显著。② 春季型节气平均气温在20世纪90年代开始出现增温,夏季型节气和秋季型节气多在20世纪70和80年代出现降温,90年代之后增温。冬季型节气在20世纪90年代之前降温明显,90年代之后气温明显升高。③ 惊蛰(0.459 ℃/10 a)和清明(0.43 ℃/10 a)气温呈显著升温趋势,并在1998年发生转暖突变。小满(0.12 ℃/10 a)气温表现出微弱的上升趋势,54 a来未发生明显突变。芒种(0.16 ℃/10 a)平均气温也呈上升趋势,并在1998年气温发生了转暖突变。④ 54 a来,华北平原惊蛰、清明年平均气温均呈现出南高北低的空间分布特征,最高温和最低温均出现在信阳和张北。小满和芒种的平均气温均呈现出中部和南部高、东部和北部低的空间分布特征,最高温和最低温均出现在济南和泰山。
Based on the daily temperature data of 53 stations in the North China Plain from 1961 to 2014
the characteristics of temperature change of 24 solar terms are analyzed by using the trend feature index
Mann-Kendall mutation test
moving T-test and spatial interpolation. The results show that: ① The temperature of 24 solar terms presents a quasi-normal unimodal distribution
and the highest average temperature in a year occurred during Great Heat (30.4 ℃)
the minimum average temperature occurred during Greater Cold (7.5 ℃). The temperature fluctuated largely during the days around Pure Brightness and Beginning of Winter. The average temperature showed an increasing trend during 24 solar terms
especially during the spring type solar terms. ② The spring type solar terms became warming in 1990s
and the summer and autumn type solar terms were cool in 1980s and 1970s and became warming after 1990s. The winter type solar terms were cool before 1990s
and the temperature increased obviously during 1990s and 2010s. ③ The average temperature of the Waking of Insects showed a significant warming trend
with a warming rate of 0.459 ℃/10a
and a warm mutation occurred in 1998. The average temperature of the Pure Brightness increased
with a warming rate of 0.43 ℃/10a
and the temperature mutation happened in 1998. The average temperature of the Lesser Fullness of Grain showed a weak trend
with a warming rate of 0.12 ℃/10a. There was no obvious mutation in the past 54 years. The annual average temperature of the Grain in Ear is on the rise
with a warming rate of 0.16 ℃/10a
and the mutation happened in 1998. ④ In the past 54 years
the spatial characteristics of the average temperature of the Waking of Insects and Pure Brightness showed that the temperature in the north of the North China Plain was lower than that in the south of the Plain
and the highest temperature and the lowest temperature appear in Xinyang and Zhangbei
respectively. The spatial characteristics of the average temperature of the Lesser Fullness of Grain and Grain in Ear showed that the temperature in the north and east of the North China Plain was lower than that in the middle and south of the plain
and the highest temperature and the lowest temperature appear in Jinan and Taishan
respectively.
二十四节气气温变化突变检验空间差异华北平原
twenty-four solar termstemperature variationmutation detectingspatial differencethe North China Plain
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