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近50年中国东南地区地面太阳辐射变化对气温变化的影响
引用本文:申彦波,王彪.近50年中国东南地区地面太阳辐射变化对气温变化的影响[J].地球物理学报,2011,54(6):1457-1465.
作者姓名:申彦波  王彪
作者单位:1. 中国气象局风能太阳能资源评估中心,北京 100081; 2. 中国气象局公共气象服务中心资源与环境气象室,北京 100081; 3. 中国科学院大气物理研究所,北京 100029
基金项目:中国科学院知识创新工程大气所“联合创新青年学者计划”项目:近50年中国地面太阳辐射变化的可能气候效应(IAP09303);公益性行业(气象)科研专项“太阳能预报技术研究”
摘    要:太阳是地球表层的最终能量来源,地面太阳辐射的变化会深刻影响地球的气候变化.本文利用中国东南地区14个气象台站1961~2008年总辐射和气温的同步观测资料,分析了近50年该地区地面太阳辐射的变化对气温变化的可能影响.结果表明,1961~1989年期间,该地区的地面太阳辐射显著减弱,所引起的气温下降超过了其他因素的增温效...

关 键 词:中国东南  地面太阳辐射  气温  气候效应
收稿时间:2010-05-26

Effect of surface solar radiation variations on temperature in South-East China during recent 50 years
SHEN Yan-Bo,WANG Biao.Effect of surface solar radiation variations on temperature in South-East China during recent 50 years[J].Chinese Journal of Geophysics,2011,54(6):1457-1465.
Authors:SHEN Yan-Bo  WANG Biao
Institution:1. Center for Wind and Solar Energy Resources Assessment, China Meteorological Administration, Beijing 100081, China; 2. Office of Resource and Environment Meteorology, Public Meteorological Service Centre, China Meteorological Administration, Beijing 100081, China; 3. Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China
Abstract:Most of Earth's surface energy is from solar, and the change of surface solar radiation will profoundly affect the global climate. In this paper, the synchronous observational data of global radiation and temperature from 14 stations in South-East China was used to analyse the probable influence of surface solar radiation change on temperature change from 1961 to 2008. During 1961~1989, surface solar radiation in South-East China was significantly weakened, resulting in a slight decrease of average temperature. During 1993~2008, surface solar radiation in South-East China was increased, which was superposed on the other warming effects and accelerated the increase of temperature. In a word, the surface solar radiation change plays an essential role in the climate change in South-East China during these 50 years.
Keywords:South-East China  Surface solar radiation  Temperature  Climate effect
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