研究论文

中国东部土壤温度、湿度变化的长期趋势及其与气候背景的联系

  • 王晓婷 ,
  • 钟中 ,
  • 崔晓燕 ,
  • 郭维栋
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  • 1.解放军理工大学气象学院,江苏 南京 211101;   2.中国科学院大气物理研究所东亚区域气候—环境重点实验室,北京 100029;
    3.空军装备研究院航空气象防化研究所,北京 100085
王晓婷(1981-),女,辽宁丹东人,博士生,主要从事陆—气相互作用与区域气候模拟方面的研究. E-mail:wangxt@tea.ac.cn

收稿日期: 2008-10-13

  修回日期: 2008-12-18

  网络出版日期: 2009-02-10

基金资助

国家重点基础研究发展计划项目“北方干旱化与人类适应”(编号:2006CB400500);国家自然科学基金项目“基于半干旱区地表—大气相互作用强化观测试验的陆面模式参数优化和物理过程发展研究”(编号:40775050);中国科学院知识创新工程项目“陆面模式参数敏感性研究”(编号:IAP07210):“东亚区域海气系统位相关系的观测和模拟研究”(编号:40675065)共同资助.

Long Term Trends of Soil Moisture and Temperature Change in East China in Relationship with Climate Background

  • WANG Xiaoting ,
  • ZHONG Zhong ,
  • CUI Xiaoyan ,
  • GUO Weidong
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  • 1.Institute of Meteorology, PLA University of Science and Technology, Nanjing 211101, China;
    2. Key Laboratory of Regional Climate-Environment for Temperate East Asia, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China;
    3. Institute of Aviation Meteorology,Beijing 100085, China

Received date: 2008-10-13

  Revised date: 2008-12-18

  Online published: 2009-02-10

摘要

利用1971—2000年中国722站逐月的土壤温度资料和1981—1998年178站逐旬的土壤湿度观测资料,分析了中国东部土壤温度、湿度变化的长期趋势及其与气温、降水变化的关系。结果表明:①我国东部土壤温度的变化在年际—年代际时间尺度上存在明显的区域性差异,其中东北地区表现为持续上升型,而西北东部—华北、江淮和西南—华南地区均为先降后升型;②1970—2000年代,土壤温度的变化在东北以及西北东部—华北地区有显著的上升趋势,而在江淮和西南—华南地区,总体而言变化趋势不显著。此外,1980—1990年代,各区域土壤湿度的变化趋势均不显著;③在年际—年代际尺度上,各区域土壤温度和气温的变化具有显著的正相关关系,而土壤湿度与土壤温度的变化普遍呈负相关关系,其中尤以西北东部—华北地区最为显著。而在较长的时间尺度上,土壤湿度与降水的变化仍然存在较好的正相关关系。

 

本文引用格式

王晓婷 , 钟中 , 崔晓燕 , 郭维栋 . 中国东部土壤温度、湿度变化的长期趋势及其与气候背景的联系[J]. 地球科学进展, 2009 , 24(2) : 181 -191 . DOI: 10.11867/j.issn.1001-8166.2009.02.0181

Abstract

Based on the data of monthly mean soil temperature from 722 stations over 1971-2000 and soil moisture observations from 178 agrometeorological stations during 1981-1998, the long term trends of soil temperature and soil moisture in East China and their relationship with the change of surface air temperature and precipitation are analyzed. The results indicate that: (1) There are obvious regional differences in the variation of soil temperature in East China The soil temperature change in Northeast China displays an increasing trend, while in the other parts of East China, such as North China, the Yangtse-Huaihe river Valley and Southwest-South China, the soil temperature change shows a trend of from dropping at first to rising afterwards. (2) From the 1970s to the 1990s, the soil temperature change in Northeast China and North China displays an increasing trend. However, the trend of soil temperature change in the Yangtse-Huaihe River Valley and Southwest-South China is not obvious in general. Generally, from 1981 to 1998, the trends of soil moisture are not obvious in each subregion. (3) From inter-annual to inter-decadal timescales, there is an evident positive correlation between the soil temperature and surface air temperature in all parts of East China. Meanwhile, soil moisture is positively correlated with precipitation, and negatively correlated with soil temperature. The negative correlation of soil temperature and soil moisture in North China is most notable.

参考文献

[1] Sun Shufen. Land Surface Process Physics, Biochemistry Mechanism and Parameterization Models[M]. Beijing: China Meteorological Press, 2005.[孙淑芬.陆面过程的物理、生化机理和参数化模型[M].北京:气象出版社,2005.]
[2] Namis J. Surfaceatmosphere interactions as fundamental causes of droughts and other climatic fluctuations[J].Arid Zone Research,1963, 20: 345-359.
[3] Shukla J, Mintz Y. Influence of land surface evapotranspiration on the earth's climate[J].Science,1982, 215(4 539): 1498-1501.[4] Yeh T C, Wetherald R T, Manabe S. The effect of soil moisture on the short-term climate and hydrology change-a numerical experiment[J].Monthly Weather Review,1984, 112(3): 474-490.
[5] Zhu Qiangen, Lan Hongping. A numerical study of soil moisture and surface albedo effects on the climate of northern China[J]. Acta Meteorologica Sinica, 1996, 54(4): 493-500.[朱乾根,兰红平.土壤湿度和地表反射率变化对中国北方气候影响的数值研究[J].气象学报,1996,54(4):493-500.]
[6] Ma Zhuguo, Wei Helin, Fu Congbin. Relationship between regional soil moisture variation and climatic variability over east China[J].Acta Meteorologica Sinica, 2000, 58(3): 278-287.[马柱国,魏和林,符淙斌.中国东部区域土壤湿度的变化及其与气候变率的关系[J].气象学报, 2000, 58(3): 278-287.] 
[7] Li Ning, Gu Wei, Du Zixuan, et al. Soil water content observations under different soil classification in central and East Inner Mongolia of China[J].Advances in Earth Science,2006, 21(2): 150-156.[李宁,顾卫,杜子璇等.内蒙古中西部地区不同土壤类型下土壤水分的研究[J].地球科学进展, 2006, 21(2): 150-156.]
[8] Wang Runyuan, Yang Xingguo, Zhang Jiulin, et al. A study of soil water and land surface evaporation and climate on Loess Plateau in the eastern Gansu province[J]. Advances in Earth Science,2007, 22(6): 625-635. [王润元, 杨兴国, 张九林,等.陇东黄土高原土壤储水量与蒸发和气候研究[J].地球科学进展,2007, 22(6): 625-635.]
[9] Dai A, Trenberth K E, Qian T. A global dataset of palmer drought severity index for 1870-2002: Relationship with soil moisture and effects of surface warming[J].Journal of Hydrometeorology,2004, 5(6): 1 117-1 130.
[10] Su Mingfeng, Wang Huijun. Decadal Co-variability of the summer surface air temperature and soil moisture in China under global warming[J].Chinese Science Bulletin, 2007, 52(8): 965-971.[苏明峰,王会军.全球变暖背景下中国夏季表面气温与土壤湿度的年代际共变率[J].科学通报, 2007, 52(8): 965-971.]
[11] Tang Maocang. Introduction of Theoretical Climatology[M]. Beijing: China Meteorological Press, 1989.[汤懋苍.理论气候学概论[M].北京:气象出版社,1989.]
[12] Tang Maocang, Zhang Jian. Seasonal mean soil temperature anomaly field at depth 3.2m and its application in prediction for flood season[J].Plateau Meteorology,1994, 13(2): 178-187.[汤懋苍,张建.季平均3.2m地温距平场在汛期预报中的应用[J].高原气象,1994,13(2):178-187.]
[13] Wang Wanqiu. Numerical experiments of the soil temperature and moisture anomalies effects on the short term climate[J]. Chinese Journal of Atmospheric Science,1991, 15(5): 115-123.[王万秋.土壤温湿异常对短期气候影响的数值模拟试验[J].大气科学,1991,15(5): 115-123.] 
[14] Zhang Y, Chen W J, Smith S L,et al. Soil temperature in Canada during the twentieth century: Complex responses to atmospheric climate change[J].Journal of Geophysical Research,2005, 110, D03112,doi: 10.1029/2004JD004910.
[15] Guo W D, Sun S F, Qian Y F. Case analyses and numerical simulation of soil thermal impacts on land surface energy budget based on an off-line land surface model[J].Advances in Atmospheric Sciences,2002, 19(3): 500-512.
[16] Sun Chenghu, Li Weijing, Zhang Zuqiang, et al. Distribution and variation features of soil humidity anomaly in Huaihe river basin and its relationship with climatic anomaly[J].Journal of Applied Meteorological Science, 2005, 16(2): 129-138.[孙丞虎,李维京,张祖强,等.淮河流域土壤湿度异常的时空分布特征及其与气候异常关系的初步研究[J].应用气象学报,2005,16(2):129-138.]
[17] Niu Tao, Liu Hongli, Chen Longxun. A question when using observation data to get regional averaged value[J].Journal of Applied Meteorological Science,2004, 15(2): 192-199.[牛涛,刘洪利,陈隆勋.利用观测资料求区域平均值过程中应注意的一个问题[J].应用气象学报,2004,15(2):192-199.]
[18] Huang Jiayou. Meteorological Statistical Analysis and Forecasting Method[M]. Beijing: China Meteorological Press, 1990.[黄嘉佑.气象统计分析与预报方法[M]. 北京:气象出版社,1990.]
[19] Wei Fengying. Modern Climatic Statistic, Diagnose and Prediction Method[M]. Beijing: China Meteorological Press, 2007.[魏凤英.现代气候统计诊断与预测技术[M].北京:气象出版社, 2007.]
[20] Lu Xiaobo, Xu Haiming, Sun Chenghu , et al. Characteristics of soil temperature variations in China in recent 50 years[J]. Journal of Nanjing Institute of Meteorology,2006, 29(5): 706-712.[陆晓波,徐海明,孙丞虎,等.中国近50a地温的变化特征[J].南京气象学院学报,2006, 29(5):706-712.]
[21] Ma Zhuguo, Huang Gang, Gan Wenqiang, et al. Multi-scale temporal characteristics of the dryness/wetness over Northern China during the last century[J].Chinese Journal of Atmospheric Science,2005, 29(5): 671-681.[马柱国,黄刚,甘文强,等.近代中国北方干湿变化趋势的多时段特征[J].大气科学,2005,29(5):671-681.]
[22] Fu Congbin, Wang Qiang. The definition and detection of the abrupt climatic change[J].Journal of Atmospheric Science, 1992, 16(4): 482-493.[符淙斌,王强.气候突变的定义和检测方法[J].大气科学,1992,16(4):482-493.]

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