首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到15条相似文献,搜索用时 140 毫秒
1.
南京市紫外线辐射强度的变化及影响因子   总被引:1,自引:0,他引:1  
利用南京市2005-02—2009-01共4 a的紫外线辐射观测资料,分析了到达地面的紫外线辐射强度的变化特征,并探讨了云、污染物浓度和雾、霾天气等对紫外线辐射强度的影响。结果表明,低云量对紫外线强度的衰减更明显,最大达58.15%,蔽光性云层对紫外线辐射强度的衰减可达71%~80%;紫外线辐射强度与污染物浓度呈负相关,其中与NO2的相关性最好,为-0.39;晴空条件下,严重霾对紫外线辐射强度的衰减率可达20%以上,浓雾对紫外线辐射强度的衰减接近50%。  相似文献   

2.
紫外线辐射特征及影响因素分析   总被引:2,自引:1,他引:1  
对太原市2002~2004年紫外线观测资料进行统计分析结果发现:紫外线辐射具有正午强早晚弱,夏季强冬季弱的特点;紫外线大值出现时间夏季明显早于冬季;通过与同时段气象因素对比分析,揭示了云状和云量、气压、能见度、湿度、空气污染对紫外线辐射的不同影响程度;紫外线辐射占太阳总辐射百分比具有冬季少夏季多和有云时非同比衰减的特点。紫外线的预报还要注重最大半小时平均值的预报,以预估紫外线对人体的最大可能伤害程度。  相似文献   

3.
临沂市紫外线辐射变化特征分析   总被引:5,自引:0,他引:5  
利用临沂市2004年7月至2005年6月逐日紫外线观测资料,分析太阳紫外线辐射强度指数和等级的年、季、月和日变化特征。指出临沂市日紫外线最大辐射强度为4级的日数为多数,即紫外线辐射指数为7~9的日数占52%,4级以上紫外线辐射主要出现在春夏季节,冬季紫外线辐射较弱,出现4级辐射日数很少且无5级辐射。晴空条件下,冬季太阳紫外线辐射强度日变幅明显小于其他季节,夏季日最大辐射强度出现在12-14时,较其他季节的日最大辐射强度出现时段滞后1小时。  相似文献   

4.
紫外线强度等级确定因子的季节性选择   总被引:2,自引:1,他引:1  
利用南京市2005年2月—2009年1月的紫外线辐射观测资料,分析了到达地面的紫外线辐射强度的季节变化和日变化规律,并重点对各月10—14时的紫外线辐射平均值、最大值和最小值的强度级别分布频率进行了分析和讨论,提出根据不同季节来选择不同的紫外线辐射特性值作为紫外线强度等级的确定因子,夏季采用10—14时的紫外线辐射强度的最大值,冬季采用其最小值,春季和秋季采用其平均值。  相似文献   

5.
利用2003年4月至2006年6月商丘太阳紫外线辐射强度资料及气象资料,分析了商丘市紫外线辐射的月、日变化规律及气象因子对紫外线辐射的影响.结果表明商丘紫外线辐射月际分布是,年初、年底辐射量小,3~9月辐射量大,最大辐射指数为11.4;紫外线辐射的日变化规律显著,基本上遵循正态分布,呈抛物线型变化,早晚辐射量小、中午前后紫外线辐射量大;紫外线辐射强度与总云量呈反相关,与能见度呈正相关,与气温呈正相关,与相对湿度呈反相关.  相似文献   

6.
利用白银市区2003年3月~11月所采集的到达地面的太阳紫外辐射数据,分析了白银市区紫外辐射的月、日变化规律以及气象因子对紫外辐射的影响程度。分析结果表明,一年中,夏季的紫外线辐射最大,春季次之,秋季偏弱,冬季最弱;一日中,早晚时段辐射量小,中午时段辐射量大:云、气温、湿度等气象要素与紫外线辐射强度密切相关,尤其是云对紫外线有很大衰减作用。  相似文献   

7.
通过对2005年6月至2006年5月期间的紫外线辐射强度监测资料和同期太阳总辐射量、云量、相对湿度资料的统计分析,研究了紫外线辐射强度的变化特征及与相关气象因子的关系。指出紫外线辐射强度具有明显的季节变化,夏季最强,冬季最弱。紫外线辐射强度日变化有明显规律,日最大值出现时间多集中在12—14时。紫外线辐射强度与太阳总辐射量呈明显正相关,与云量、相对湿度呈明显负相关。  相似文献   

8.
广州市紫外线辐射资料分析与预报模型的建立   总被引:2,自引:1,他引:1       下载免费PDF全文
通过对广州市2004~2006年紫外线辐射资料的统计分析,初步揭示紫外线辐射强度季节性变化的规律,同时结合数值预报产品,用多元回归方法建立预报模型.  相似文献   

9.
通过对张掖市2005~2006年紫外线强度监测资料综合分析,得出张掖市紫外线辐射3级强度以上占全年的58.8%,属于紫外线辐射高强度地区,对人体影响很大。日最大值出现在12:00—14:30时段,年以6—9月为最强。各季节紫外线变化以夏秋2季波动较大,主要是因为该季节天气现象复杂。统计分析发现,云量的多少对紫外线的辐射强度影响很大,当全天或11:00~16:00时段内云量达到6成以上时,紫外线强度均在2级以下。  相似文献   

10.
石家庄市紫外线监测分析及预报方法   总被引:2,自引:0,他引:2  
曲晓黎  张彦恒  赵娜  袁媛 《气象科技》2011,39(6):731-735
利用2006-2008年石家庄市紫外线监测数据,分析了近3年紫外线辐射特征,结果表明:石家庄市紫外线等级1~4级之间,其中1级的日数有175天,2级251天,3级220天,4级432天,年平均日数分别为58、84、73天和144天.紫外线指数“较强”级别出现的频率最高,“中等”以上日数占60.3%,说明石家庄属于紫外线...  相似文献   

11.
The purpose of this study is to examine the effect of clouds on the ultraviolet erythemal irradiance. The study was developed at three stations in the Iberian Peninsula: Madrid and Murcia, using data recorded in the period 2000–2001, and Zaragoza, using data recorded in 2001. In order to determine the cloud effect on ultraviolet erythemal irradiance, we considered a cloud modification factor defined as the ratio between the measured values of ultraviolet erythemal irradiance and the corresponding clear-sky ultraviolet erythemal irradiance, which would be expected for the same time period and atmospheric conditions. The dependence of this cloud modification factor on total cloud amount, cloud type and solar elevation angle was investigated. The results suggest that the effect of cloud on ultraviolet erythemal irradiance can be parameterized in a simple way in terms of the cloud amount. Our results suggest that the same cloud modification factor model can be used at the three analysed locations estimating the ultraviolet erythemal irradiance with mean bias deviation (MBD) in the range of the expected experimental errors. This cloud modification factor is lower than that associated to the whole solar spectral range, indicating that the attenuation for the ultraviolet erythemal irradiance is lower than that associated to other solar spectral ranges. The cloud modification factor for ultraviolet erythemal irradiance presents dependence with solar elevation, with opposite dependencies with solar elevation for overcast and partial cloud cover conditions, a fact that can be explained in terms of the influence of reflection-enhancement of the ultraviolet irradiance in the last case. Concerning the influence of cloud type, a limited study of two cloud categories, low and medium level and high level, indicated that for overcast conditions, lower clouds presents an attenuation of ultraviolet erythemal irradiance 20% greater than that associated to high level clouds.  相似文献   

12.
利用2008年4月至2012年12月菏泽市紫外线观测资料以及地面常规气象观测资料和空气质量资料,分析了该地区太阳紫外线辐射的变化特征及其与各因子的相关关系,并建立逐月预报方程。结果表明:菏泽紫外线辐射年总量达到187.98 W/m2,春夏两季明显高于秋冬两季,5月达到全年的最大值,1月为全年的最小值;3~9月紫外线辐射极大值均可达到5级,其他月份均可达到4级。不同天气条件下紫外线辐射强度存在明显差异,其中晴天紫外线辐射强且稳定,呈抛物线变化;多云天紫外线辐射波动较大,时强时弱;阴天紫外线辐射相对较弱。紫外线辐射强度与风速、能见度、气温呈正相关,与总云量、低云量、相对湿度呈负相关,与SO2、PM10、NO2、PM2.5多呈负相关。基于多元线性回归分析向后剔除变量方法得出的逐月预报方程,经检验总体预报效果较好,对当地紫外线等级预报工作具有参考意义。  相似文献   

13.
In this paper,data of solar direct spectral radiance observation in summer and autumn of 1990 and 1991 were usedto derive the average atmospheric extinction spectra for very clear days each year.The difference of these two extinctionspectra is obvious and considered as the contribution of volcanic cloud resulting from Pinatobu's volcanic eruption inmiddle June of 1991.This average size distribution of volcanic cloud was retrieved from the difference spectra and givenin this paper which will be useful for estimation and modeling of the effects of volcanic eruption.  相似文献   

14.
Although radar observations capture storm structures with high spatiotemporal resolutions, they are limited within the storm region after the precipitation formed. Geostationary satellites data cover the gaps in the radar network prior to the formation of the precipitation for the storms and their environment. The study explores the effects of assimilating the water vapor channel radiances from Himawari-8 data with Weather Research and Forecasting model data assimilation system(WRFDA) for a severe storm case over north China. A fast cloud detection scheme for Advanced Himawari imager(AHI)radiance is enhanced in the framework of the WRFDA system initially in this study. The bias corrections, the cloud detection for the clear-sky AHI radiance, and the observation error modeling for cloudy radiance are conducted before the data assimilation. All AHI radiance observations are fully applied without any quality control for all-sky AHI radiance data assimilation. Results show that the simulated all-sky AHI radiance fits the observations better by using the cloud dependent observation error model, further improving the cloud heights. The all-sky AHI radiance assimilation adjusts all types of hydrometeor variables, especially cloud water and precipitation snow. It is proven that assimilating all-sky AHI data improves hydrometeor specifications when verified against the radar reflectivity. Consequently, the assimilation of AHI observations under the all-sky condition has an overall improved impact on both the precipitation locations and intensity compared to the experiment with only conventional and AHI clear-sky radiance data.  相似文献   

15.
Summary Sky luminance and spectral radiance has been characterised at Neumayer, Antarctica for selected situations during the austral summer 2003/04. Luminance has also been measured at Boulder, Colorado, USA in June 2003. The high reflectivity of the surface (albedo) in Antarctica, reaching values up to 100% in the ultraviolet (UV) and visible part of the solar spectrum due to snow cover, modifies the radiation field considerably when compared to mid-latitudes. A dependence of luminance and spectral radiance on solar zenith angle (SZA) and surface albedo has been identified. For snow and cloudless sky, the horizon luminance exceeds the zenith luminance by as much as a factor of 8.2 and 7.6 for a SZA of 86° and 48°, respectively. In contrast, over grass this factor amounts to 4.9 for a SZA of 86° and a factor of only 1.4 for a SZA of 48°. Thus, a snow surface with high albedo can enhance horizon brightening compared to grass by a factor of 1.7 for low sun at a SZA of 86° and by a factor of 5 for high sun at a SZA of 48°. For cloudy cases, zenith luminance and radiance exceed the cloudless value by a factor of 10 due to multiple scattering between the cloud base and high albedo surface. Measurements of spectral radiance show increased horizon brightening for increasing wavelengths and generally confirm the findings for luminance. Good agreement with model results is found for some cases; however there are also large deviations between measured and modelled values especially in the infrared. These deviations can only partly be explained by measurement uncertainties; to completely resolve the differences between model and measurement further studies need to be performed, which will require an improvement of modelling the spectral radiance. From the present study it can be concluded that a change in albedo conditions, which is predicted as a consequence of climate change, will significantly change the radiation conditions in polar regions as well.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号