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1.
华南地面太阳辐射状况及其转折特征分析   总被引:4,自引:0,他引:4  
利用华南地区1961—2003年的太阳总辐射、直接辐射和散射辐射资料分析了该地区地面太阳辐射状况,包括年际变化和季节变化,重点分析了该地区太阳总辐射在1980—1990年代期间的转折过程,并与全国平均状况进行对比。结果表明:1961—2003年,华南地区的总辐射和直接辐射整体呈下降趋势,散射辐射的变化不显著,与全国平均辐射状况的变化趋势一致。1983年之前,华南总辐射处于迅速下降阶段,之后发生转折开始回升,至2001年前后已经恢复到平均水平。华南地区总辐射和散射辐射的季节变化非常明显,夏季最高,春秋两季次之,冬季最低,一年中散射辐射的最高和最低值相比总辐射提前一个月出现。另外,结合云量和能见度资料初步分析了广州市地面太阳辐射的变化和转折过程,表明广州地面太阳总辐射的下降及转折过程主要与该地区的大气清洁程度相关。  相似文献   

2.
基于我国100个地面站点的地面太阳总辐射、日平均云量资料分析1961~2009年我国地面太阳辐射(Surface Solar Radiation,SSR)变化特征及云在不同时期对SSR的影响。结果显示:1961~2009年我国SSR经历了先下降后上升的变化过程,其中1961~1990年SSR显著下降("变暗"),下降速率为-4.3%/10 a(7.87 W m–2(10 a)–1),各地SSR变化趋势比较一致;1990年后SSR开始上升("变亮"),上升速率为2.8%/10 a(2.4 W m–2(10 a)–1),各地SSR变化趋势不如前一阶段一致,但没有显著的地域分布特征。晴空条件的设置对1961~1990年各站点SSR变化特征影响不大,仍为大范围下降("变暗"),但对1990~2009年的结果影响显著。相比全天空条件的结果,晴空条件下1990~2009年我国SSR变化有明显的南北特征,南方地区以"变亮"为主,而北方地区大多继续"变暗",但"变暗"速度减缓。1961~1990年我国总云量总体呈小幅下降趋势,下降速率很慢,这一时期总云量与全天空SSR没有很好的对应关系;1990~2009年我国总云量总体呈小幅上升趋势,有显著的南北分布差异,北方地区以上升趋势为主,南方地区以下降趋势为主,期间云量与全天空情况下SSR有很好的对应关系。这些结果表明,在"变暗"阶段,云对SSR的作用不显著,而在"变亮"阶段,云的作用变得较为突出。  相似文献   

3.
利用1961-2010年杭州站太阳总辐射、日照、降水、云量、水汽压和视程障碍日数资料,采用气候倾向率、突变检测和相关分析等方法,研究了近50 a太阳总辐射和日照时数的变化特征及其成因.结果表明,近50 a杭州年太阳总辐射和日照时数均呈减少趋势,以日照时数下降更明显,其突变年份分别发生在1975和1971年;年太阳总辐射下降主要出现在1961-1992年,1993-2010年呈波动变化,1993年以后未出现明显“变亮期”,而年日照时数在上述两个时段都表现为显著下降趋势,至21世纪00年代降到最低.夏、秋、冬3季太阳总辐射和日照时数趋势变化与年变化基本一致,春季两者在1961-1992年均呈下降趋势,1993年后存在较明显的“变亮期”.降水量、低云量和轻雾日的增加是造成杭州年及夏、秋、冬3季太阳总辐射和日照时数减少的主要原因,春季太阳总辐射的增加则主要与降水量、雨日、总云量和低云量减少关系密切,此外,霾日数变化对日照时数的影响也非常重要.  相似文献   

4.
利用1961-1990年共30年贵阳基准气候站辐射以及日照资料,对贵阳市光资源特征进行统计分析,并利用气候学方法分析计算了贵阳的建设光照参数,结果表明:①贵阳市30年年总辐射最平均为3616.4MJ/m2,处于全国低值区,②光资源特征量的月季变化明显,其值均为夏季大,冬季小,与太阳高度角的月季变化、主要的自然天气季节关系密切。③近30年来贵阳总辐射、直接辐射、日照时数、日照百分率的逐年变化基本呈递减趋势,散射辐射逐年变化趋势不太明显,但从10年平均散射辐射值看,70年代平均散射辐射值低于80年代平均散射辐射值。④贵阳混浊度逐年变化呈递增趋势。⑤贵阳的房屋设计的最佳朝向为南向,东向次之,北向最差,  相似文献   

5.
我国南方中东部地区地面太阳总辐射变化规律   总被引:5,自引:2,他引:3       下载免费PDF全文
为进一步探讨我国地面太阳辐射的变化规律及其原因,选择我国南方中东部地区,利用该区域1961—2007年33个站点的地面太阳总辐射资料,结合云量、大气水汽含量和能见度等观测资料,综合研究该区域地面太阳总辐射的变化规律及其原因。结果表明:1961—1989年,我国南方中东部地区地面太阳总辐射呈下降趋势,之后发生逆转,1995年后其变化趋于缓和,1961—2007年总体呈现变暗—变亮—变缓的趋势。究其原因,该区域云量平均值由峰入谷、云量下降速率由快变慢可能是产生此变化趋势的原因之一;其次,20世纪80年代到21世纪初,气溶胶光学厚度上升趋势减缓,气溶胶地面辐射强迫变化趋于缓和,某些区域甚至出现下降,也导致部分站点地面太阳总辐射由暗变亮。  相似文献   

6.
长江三角洲地面太阳辐射变化和相关因素分析   总被引:6,自引:1,他引:5  
通过对长江三角洲地区(南京,杭州,上海,合肥)1961-2000年辐射资料的比较,根据中国气象局编写的<气象辐射观测方法>对该地区年地面太阳辐射平均值进行计算,分析长江三角洲地区地面太阳辐射的长期变化及季节差异,并讨论长江三角洲地区两个重要城市杭州和南京的部分与地面太阳辐射息息相关的因子,分析长江三角洲地区直接辐射,散射辐射与总辐射的关系.结果表明:在40 a中长江三角洲地区4个代表城市总辐射长期变化分为两个阶段,1980s为谷值,谷值前有明显的下降趋势,后期总辐射变化趋势发生逆转,就所研究城市而言,1960s到1980s地面太阳总辐射的下降主要是由于直接辐射下降引起的.  相似文献   

7.
1961~2003年中国大陆地表太阳总辐射变化趋势   总被引:11,自引:2,他引:9  
利用中国大陆30个气象站1961~2003年地表太阳总辐射观测数据,研究了辐射年总量和季节总量的变化趋势及其空间分布特征,并探讨了其原因。结果表明:1961~1989年中国大陆地表太阳总辐射总体呈减少趋势,减少约11%;1990~2003年间略有回升,但其均值仍比1961~1965年的均值低8.2%。大部分地区春夏两季减少明显,约占年减少量的55%~85%。对各站点观测数据的趋势分析表明,地表太阳总辐射随时间的变化大致可分为4种类型,其特征分别为:1961~2003年间持续减少(占总站点数20%);20世纪60年代初到80年代中期呈显著减少趋势,其后线性趋势不明显(占总站点数40%)或呈逐步增加趋势(占总站点数16.7%);1961~2003年间无显著变化(占总站点数23.3%)。这4种类型在空间分布上无明显的区域特征。日照时数减少是总辐射减少的主要原因,可以解释地表太阳辐射年总量变化的72%,日照时数随风速的增大而增加。  相似文献   

8.
华东三市能见度、气溶胶和太阳辐射变化特征   总被引:2,自引:0,他引:2  
刘晓舟  许潇锋  杨军 《气象科技》2013,41(2):352-359
利用南京、杭州和合肥3个台站1961-2001年能见度和水汽压资料,反演3个城市0.55 μm气溶胶光学厚度(AOD),并据此分析了这3个城市的能见度和气溶胶光学厚度的变化特征;利用太阳辐射资料分析太阳辐射变化特征,并与气溶胶光学厚度变化特征作对比.结果表明,在1961-2001年间,这3个城市的能见度呈现明显下降的趋势,南京和杭州下降最快,合肥下降较慢,并且具有明显的季节性差异,夏季最大,冬季最小.气溶胶光学厚度则呈现上升趋势,增加最快的是南京,最慢的是合肥.按季节划分来看,春夏较高,秋冬较低.1990年之前,这3个地区的总辐射和直接辐射都呈现明显的下降趋势,散射辐射的变化趋势不显著,而1990年后,南京与合肥的总辐射略有回升.辐射季节总量按由多到少依次是夏季、春季、秋季和冬季.气溶胶光学厚度与直接辐射间有较好的负相关性.  相似文献   

9.
利用1960—2005年京津冀地区的地面太阳辐射资料,综合分析了该地区45年太阳辐射的分布状况和变化趋势,并结合云量、降水量、气溶胶光学厚度和大气含水量,分析了该地区太阳辐射的变化原因。结果表明:(1)京津冀地区的太阳辐射并没有出现20世纪80年代末到90年代中期的"变亮"现象;同期冬、春季总辐射下降,夏、秋季上升;(2)在1985—1997年间,依据总辐射变化情况,京津冀地区被分为截然相反的两个区域:东部地区总辐射增加,倾向率为1.016 MJ.m-2.mon-1.(10a)-1;西部地区总辐射减少,倾向率为10.092MJ.m-2.mon-1.(10a)-1;(3)总辐射增加的区域,主要是由于云量减少、降水量减少所伴随的日照时数增加以及气溶胶光学厚度降低所造成的;(4)总辐射减少的区域,云量、气溶胶光学厚度和降水量变化并不显著,总辐射持续减少。  相似文献   

10.
正近几十年来,到达地球表面的太阳(短波)辐射经历了巨大的变化。自20世纪50年代以来,地表短波辐射在大面积区域逐渐减弱。在欧洲,这种所谓的"变暗"一直持续到20世纪80年代末,那时"变亮"开始,地表短波辐射再次增加。在中国,"变暗"在20世纪80年代趋于平稳,但直到2005年才转为"变亮"。云层和气溶胶的变化是造成这种现象的主要潜在原因,但科学界尚未就不同潜在强迫因子的相对作用达成共识。  相似文献   

11.
Solar radiation is an important energy source for plants on the earth and also a major component of the global energy balance. Variations in solar radiation incident at the earth’s surface profoundly affect the human and terrestrial environment, including the climate change. To provide useful information for predicting the future climate change in China, distinctive regional features in spatial and temporal variations of the surface solar radiation (SSR) and corresponding attributions (such as cloud and aer...  相似文献   

12.
Solar radiation is an important energy source for plants on the earth and also a major component of the global energy balance.Variations in solar radiation incident at the earth's surface profoundly affect the human and terrestrial environment,including the climate change.To provide useful information for predicting the future climate change in China,distinctive regional features in spatial and temporal variations of the surface solar radiation (SSR) and corresponding attributions (such as cloud and aerosol) are analyzed based on SSR observations and other meteorological measurements in North and East China from 1961 to 2007.Multiple models,such as the plane-parallel radiative transfer model,empirical and statistical models,and corrclation and regrcssion analysis methods are used in the study.The results are given as follows.(1) During 1961-2007,the total SSR in North China went through a process from quickly “dimming” to slowly “dimming”,while in East China,a significant transition from “dimming” to “brightening” occurred.Although there are some differences between thc two regional variation trends,long-term variations in SSR in the two regions are basically consistent with the observation worldwide.(2) Between the 1960s and 1980s,in both North and East China,aerosols played a critical rolc in the radiation dimming.However,after 1989,different variation trends of SSR occurred in North and East China,indicating that aerosols were not the dominant factor.(3) Cloud cover contributed less to the variation of SSR in North China,but was thc major attribution in East China and played a promoting role in the reversal of SSR from dimming to brightening,especially in the “remarkable brightening” period,with its contribution as high as 70%.  相似文献   

13.
The long-term trends of total surface solar radiation(SSR),surface diffuse radiation,and surface air temperature were analyzed in this study based on updated 48-yr data from 55 observational stations in China,and then the correlation between SSR and the diurnal temperature range(DTR) was studied.The effect of total solar radiation on surface air temperature in China was investigated on the basis of the above analyses.A strong correlation between SSR and DTR was found for the period 1961-2008 in China.The highest correlation and steepest regression line slope occurred in winter,indicating that the solar radiation effect on DTR was the largest in this season.Clouds and water vapor have strong influences on both SSR and DTR,and hence on their relationship.The largest correlations between SSR and DTR occurred in wintertime in northern China,regardless of all-day(including clear days and cloudy days) or clear-day cases.Our results also showed that radiation arriving at the surface in China decreased significantly during 1961-1989(dimming period),but began to increase during 1990-2008(brightening period),in agreement with previous global studies.The reduction of total SSR offset partially the greenhouse warming during 1961-1989.However,with the increase of SSR after 1990,this offsetting effect vanished;on the contrary,it even made a contribution to the accelerated warming.Nonetheless,the greenhouse warming still played a controlling role because of the increasing of minimum and mean surface temperatures in the whole study period of 1961-2008.We estimated that the greenhouse gases alone may have caused surface temperatures to rise by 0.31-0.46℃(10 yr) 1 during 1961-2008,which is higher than previously estimated.Analysis of the corresponding changes in total solar radiation,diffuse radiation,and total cloud cover indicated that the dimming and brightening phenomena in China were likely attributable to increases in absorptive and scattering aerosols in the atmosphere,respectively.  相似文献   

14.
The Tibetan Plateau (TP) with an average elevation of over 4,000 m asl is the highest and most extensive highland in the world. We used monthly mean sunshine duration from the Chinese Meteorological Administration to examine the spatial and temporal variability of sunshine duration at 71 stations with elevations above 2,000 m asl in the eastern and central TP during the 1961–2005 period. The temporal evolution of the mean annual sunshine duration series shows a significant increase from 1961 to 1982 at a rate of 49.8 h/decade, followed by a decrease from 1983 to 2005 at a rate of ?65.1 h/decade, with an overall significant decrease at a rate of ?20.6 h/decade during the whole 1961–2005 period, which is mainly due to the summer and spring seasons. This confirms the evidence that sunshine duration in the TP ranges from brightening to dimming in accordance with sunshine duration trends in the rest of China. The surface solar radiation downwards from ERA-40 reanalysis data in the same region confirms the brightening/dimming phenomenon shown by the sunshine duration before/after the 1980s. Otherwise, additional climatic variables such as low cloud amount, total cloud amount, precipitation, relative humidity and water vapor pressure, in most cases, exhibit significant negative correlation with sunshine duration in the TP on an annual and seasonal basis before and after 1982, respectively. The trends of these variables suggest that changes in some of them might be related to the brightening and dimming detected with the use of sunshine duration measurements over the TP. We also hypothesize that the impact of anthropogenic aerosols upon the climatic variables analyzed cannot be rejected, especially in the significant increase in low cloud cover since approximately 1980.  相似文献   

15.
利用云贵高原1961~2005年9个日射站辐射和气候观测资料以及能见度观测资料等,采用数理统计方法,研究了该区域到达地表太阳总辐射量(以下简称总辐射)变化特征及其影响因子.结果表明:该区年总辐射的空间分布特点是西部高于东部,丽江站最高(6207MJ·m-2·a-1),遵义站最低(3340MJ·m-2·a-1).1961...  相似文献   

16.
NASA/GEWEX (National Aeronautics and Space Administration/Global Energy and Water Cycle Experiment) Surface Radiation Budget (SRB) has released its latest radiation dataset, version 3.0. We examine the accuracy of the monthly mean global radiation in China using surface-observed radiation (SOR) data at 42 stations during the period 1984?C2004. Overall comparison shows a general overestimation of satellite retrieval radiation data with a bias of 14.6?W?m?2 and a root mean square error of 25.9?W?m?2. Differences at individual stations suggested satellite data are consistently higher than surface measurements over eastern China (110°E), but occasional underestimation occurs in Western China, especially Southwest China. Intra-annual variation analysis indicates that SRB satellite radiation can capture the annual cycle well. For trend of global radiations, there are evident discrepancies between satellite retrievals and surface measurements for both the entire period and segmental terms. For the entire period from 1984 to 2004, most stations show a positive trend based on surface measurements, while the majority of collocated pixels show a negative trend. Segmental trends demonstrated that the principal difference occurred during the first period of 1981?C1994. After 1994, the two datasets change similarly. Therefore, trend analysis in terms of detecting global dimming/brightening remains very difficult as surface measurements and satellite products do not agree yet. In addition, some proposals are made towards better understanding of the bias of satellite products and to improve further the satellite retrieval algorithm with better representation of both cloud and aerosol properties.  相似文献   

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