沈阳空气质量对到达地面太阳辐射的影响分析

汪宏宇, 龚强, 付丹丹

中国环境科学 ›› 2020, Vol. 40 ›› Issue (7) : 2839-2849.

PDF(780 KB)
PDF(780 KB)
中国环境科学 ›› 2020, Vol. 40 ›› Issue (7) : 2839-2849.
大气污染与控制

沈阳空气质量对到达地面太阳辐射的影响分析

  • 汪宏宇1, 龚强2, 付丹丹3
作者信息 +

Analysis for the influence of air quality on solar radiation arriving on the ground in Shenyang

  • WANG Hong-yu1, GONG Qiang2, FU Dan-dan3
Author information +
文章历史 +

摘要

利用沈阳国家基本气象站1961~2017年气象观测数据和沈阳市2013~2017年逐日空气质量监测数据,研究了沈阳市太阳辐射与空气质量变化特征,及空气质量对到达地面太阳辐射的影响.结果表明:20世纪90年代之后沈阳市太阳总辐射“变亮”与日照增多、大气清洁度增加有关,与总云量、水汽压基本不存在线性相关关系.太阳辐射与空气质量的季节特征相反,太阳总辐射总体为春夏季和初秋强、深秋和冬季弱,而SO2、NO2、CO、PM10、PM2.5质量浓度以及AQI指数为春夏季和初秋低、深秋及冬季高.在气象因子差异不大的情况下,空气质量情况是影响太阳辐射偏强或偏弱的关键因素,SO2、NO2、CO、PM10、PM2.5质量浓度偏低是沈阳2017年太阳总辐射、直接辐射异常强的主要原因之一.晴天情况下,沈阳空气质量三级较二级情况下太阳总辐射平均衰减了10%,直接辐射平均衰减了18%.12月下旬的晴天严重污染日,空气污染可导致直接辐射减少67%,总辐射减少34%.PM2.5的削光作用更为明显,PM2.5为首要污染物的晴天平均太阳直接辐射衰减明显大于以SO2和PM10为首要污染物的情况,虽然PM2.5为首要污染物时的日平均散射辐射大于PM10为首要污染物的情况,但不足以补充其对直接辐射的衰减,进而导致总辐射衰减.

Abstract

Using the meteorological observation data of Shenyang National Basic Meteorological Station from 1961 to 2017 and the daily air quality monitoring data of Shenyang in 2013~2017, the variation characteristics of solar radiation and air quality, and the quantitative influence of air quality on the solar radiation reaching the ground were analyzed. The results show that the "brightening" of total solar radiation in Shenyang after 1990s was related to the increase of sunshine and atmospheric cleanliness, and had no linear correlation with total cloud cover and water vapor pressure. The seasonal characteristics of solar radiation and air quality are opposite. The total solar radiation was strong in spring, summer and early autumn, weak in late autumn and winter. The mass concentration of SO2, NO2, CO, PM10, PM2.5 and AQI index were low in spring, summer and early autumn, and high in late autumn and winter. In the case of little difference in meteorological factors, the air quality was the key factor affecting the solar radiation. The low mass concentration of SO2, NO2, CO, PM10 and PM2.5 was one of the main reasons for the abnormal higher value of total solar radiation and direct radiation in Shenyang in 2017. In sunny days, the average attenuation of total solar radiation and direct radiation was 10% and 18% respectively in level 3 of the air quality compared with that in level 2 in Shenyang. Air pollution can result in 67% reduction in direct radiation and 34% reduction in total radiation in sunny days in the latter part of December. The decreasing influence of PM2.5 on solar radiation was more obvious. The attenuation of the average direct solar radiation on sunny days with PM2.5 as the primary pollutant was significantly greater than that with SO2 and PM10 as the primary pollutants. Although the daily average scattering radiation of PM2.5 as the primary pollutant was greater than that with PM10 as the primary pollutant, it was not enough to supplement the attenuation of the direct radiation, resulting in the total radiation attenuation.

关键词

空气质量 / 沈阳 / 太阳辐射 / 影响

Key words

air quality / impact / Shenyang / solar radiation

引用本文

导出引用
汪宏宇, 龚强, 付丹丹. 沈阳空气质量对到达地面太阳辐射的影响分析[J]. 中国环境科学. 2020, 40(7): 2839-2849
WANG Hong-yu, GONG Qiang, FU Dan-dan. Analysis for the influence of air quality on solar radiation arriving on the ground in Shenyang[J]. China Environmental Science. 2020, 40(7): 2839-2849
中图分类号: X51   

参考文献

[1] Liepert B G. Observed reductions of surface solar radiation at sites in the United States and worldwide from 1961 to 1990[J]. Geophysical Research Letters, 2002,29(10):1421.
[2] Wild M, Gilgen H, Roesch A, et al. From dimming to brightening:Decadal changes in solar radiation at Earth's surface[J]. Science, 2005,308:847-850.
[3] Gilgen H, Wild M, Ohmura A. Means and trends of shortwave irradiance at the surface estimated from global energy balance archive data[J]. J. Clim., 1998,11(8):2042-2061.
[4] Stanhill G, Cohen S. Global dimming:A review of the evidence for a wide spread and significant reduction in global radiation with discussion of its probable causes and possible agricultural consequences[J]. Agri. and Forest Meteor., 2001,107(4):255-278.
[5] Alpert P, Kishcha P, Kaufman Y J, et al. Global dimming or local dimming? Effect of urbanization on sunlight availability[J]. Geophys. Res. Lett., 2005,32:L17802.
[6] Qian Y, Wang W, Leung L, et al. Variability of solar radiation under cloud-free skies in China:The role of aerosols.[J] Geophys Res Lett, 2007,34:L12804.
[7] Pinker R T, Zhang B, Dutton E G. Do satellites detect trends in surface solar radiation?[J]. Science, 2005,308:850-854.
[8] 齐月,房世波,周文佐.近50年来中国地面太阳辐射变化及其空间分布[J]. 生态学报, 2014,34(24):7444-7453. Qi Y, Fang S B, Zhou W Z. Variation and spatial distribution of surface solar radiation in China over recent 50years[J]. Acta Ecologica Sinica, 2014,34(24):7444-7453.
[9] Qian Y, Kaiser D P, Leung L R, et al. More frequent cloud-free sky and less surface solar radiation in China from 1955 to 2000[J]. Geophys. Res. Lett., 2006,33:L01812.
[10] 齐月,房世波,周文佐.近50年来中国东、西部地面太阳辐射变化及其与大气环境变化的关系[J]. 物理学报, 2015,64(8):089201. Qi Y, Fang S B, Zhou W Z. Correlative analysis between the changes of surface solar radiation and its relationship with air pollution, as well as meteorological factor in East and West China in recent 50years[J]. Acta Phys. Sin, 2015,64(8):089201.
[11] Zhang Y L, Qin B Q, Chen W M. Analysis of 40year records of solar radiation data in Shanghai, Nanjing and Hangzhou in eastern China[J]. Theor. Appl. Climatol., 2004,78:217-227.
[12] Che H Z, Shi G Y, Zhang X Y, et al. Analysis of sky conditions using 40year records of solar radiation data in China[J]. Theor. Appl. Climatol., 2006,89:83-94.
[13] Norris J R, Wild M. Trend in aerosol radiative effects over Europe inferred from observed cloud cover, solar "dimming" and solar "brightening"[J]. J. Geophys. Res., 2007,112:D08214.
[14] Elminir H K. Relative influence of weather conditions and air pollutants on solar radiation Part 2:Modification of solar radiation over urban and rural sites[J]. Meteor Atmos Phys, 2007,96:257-264.
[15] 符传博,丹利.大气污染加剧对中国区域散射辐射比例的影响[J]. 科学通报, 2018,63(25):2655-2665. Fu C B, Dan L. Influence of intensified air pollution on the sunny diffuse radiation fraction in China[J]. Chin. Sci. Bull., 2018,63(25):2655-2665.
[16] Katsumasa T, Atsumu O,Folini D, et al. Is global dimming and brightening in Japan limited to urban areas?[J]. Atmospheric Chemistry & Physics Discussions, 2016:1-50.
[17] Khodakarami J, Ghobadi P. Urban pollution and solar radiation impacts[J]. Renewable & Sustainable Energy Reviews, 2016,57:965-976.
[18] 张明锋,林正云.浅析城市发展对太阳辐射的影响[J]. 太阳能学报, 2001,22(1):53-58. Zhang M F, Lin Z Y. Analysis on the effect of urban development on solar radiation[J]. Acta Energiae Solaris Sinica, 2001,22(1):53-58.
[19] 邵振艳,周涛,史培军,等.大气污染对中国重点城市地面总辐射影响的时空特征[J]. 高原气象, 2009,28(5):1105-1114. Shao Z Y, Zhou T, Shi P J, et al. Spatial-Temporal Characteristics of the Influence Atmospheric Pollutant on Surface Solar Radiation Changes for Chinese Key Cities[J]. Plateau Meteor, 2009,28(5):1105-1114.
[20] 蔡子颖,姚青,韩素芹,等.气溶胶直接气候效应对天津气象和空气质量的影响[J]. 中国环境科学, 2017,37(3):908-914. Cai Z Y, Yao Q, Han S Q, et al. The influence of the air quality and meteorological field about Aerosol direct climate effect on Tianjin[J]. China Environmental Science, 2017,37(3):908-914.
[21] 马金玉,梁宏,罗勇,等.中国近50年太阳直接辐射和散射辐射变化趋势特征[J]. 物理学报, 2011,60(6):069601. Ma Jinyu, Liang Hong, Luo Yong, et al. Variation trend of direct and diffuse radiation in China over recent 50years[J]. Acta Phys. Sin., 2011,60(6):069601.
[22] Yousef A, Ruslan M H, Alghoul M A, et al. Solar attenuation by aerosols:An overview[J]. Renewable and Sustainable Energy Reviews, 2012,16(6):4264-4276.
[23] Suthar M, Singh G K, Saini R P. Effects of air pollution for estimating global solar radiation in India[J]. International Journal of Sustainable Energy, 2017,36(1):20-27.
[24] Zhao N, Zeng X F, Han S M. Solar radiation estimation using sunshine hour and air pollution index in China[J]. Energy Conversion & Management, 2013,76:846-851.
[25] Fan J L, Wu L F, Zhang F C, et al. Evaluating the effect of air pollution on global and diffuse solar radiation prediction using support vector machine modeling based on sunshine duration and air temperature[J]. Renewable & Sustainable Energy Reviews, 2018,94:732-747.
[26] 喻丽,申双和,陶苏林,等.基于空气污染指数的太阳日总辐射计算方法[J]. 应用气象学报, 2015,26(3):291-299. Yu L, Shen S H, Tao S L, et al. Daily total radiation model based on air pollution index[J]. Journal of Applied Meteorological Science, 2015,26(3):291-299.
[27] 刘卫亮,刘长良,林永君,等.基于AOD估计的晴空太阳辐射强度滚动预测[J]. 太阳能学报, 2019,40(7):1797-1804. Liu W L, Liu C L, Lin Y J, et al. Rolling forcast of solar radiation intensity in claer sky based on AOD estimation[J]. Acta Energiae Solars Sinica, 2019,40(7):1797-1804.
[28] 陈灿,何珍,何颖,等.关于雾霾天气对太阳辐射量的影响研究实验[J]. 科技创新导报, 2015,(6):114-116. Chen C, He Z, He Y, et al. Experimental studies on the effects of fog and haze on solar radiation[J]. Science and Technology Innovation Herald, 2015,(6):114-116.
[29] 刘长焕,邓雪娇,朱彬,等.近10年中国三大经济区太阳总辐射特征及其与O3、PM2.5的关系[J]. 中国环境科学, 2018,38(8):2820-2829. Liu C H, Deng X J, Zhu B, et al. Characteristics of GSR of China's three major economic regions in the past 10years and its relationship with O3and PM2.5[J]. China Environmental Science, 2018,38(8):2820-2829.
[30] 田莎莎,张显,卞思思,等.沈阳市PM2.5污染组分特征及其来源解析[J]. 中国环境科学, 2019,39(2):487-496. Tian S S, Zhang X, Bian S S, et al. Characteristics of PM2.5 pollution components and their sources in Shenyang[J]. China Environmental Science, 2019,39(2):487-496.
[31] 韩玺山,王景乾.沈阳地区空气污染对太阳辐射的影响兼论沈阳空气质量的逐年变化[J]. 环境科学, 1980,1(6):9-13. HanX S, Wang J Q. The influence of air pollution on solar radiation in Shenyang and the annual change of air quality in Shenyang[J]. Environmental Science, 1980,1(6):9-13.
[32] GB3095-2012环境空气质量标准[S]. GB3095-2012 Ambient air quality standards[S].
[33] HJ/T193-2005环境空气质量自动监测技术规范[S]. HJ/T193-2005 Automated methods for ambient air quality monitoring[S].
[34] 申彦波,赵东,祝昌汉,等.近50年来鄂尔多斯地面太阳辐射的变化及与相关气象要素的联系[J]. 高原气象, 2009,28(4):786-794. Shen Y B, Zhao D, Zhu C H, et al. Variational characteristics of surface solar radiation and associated meteorological elements over ordos plateau in recent 50years[J]. Plateau Meteorology, 2009,28(4):786-794.
[35] 赵辉,郑有飞,吴晓云,等.江苏省大气复合污染特征与相关气象驱动[J]. 中国环境科学, 2018,38(8):2830-2839. Zhao H, Zheng Y F, Wu X Y, et al. Atmospheric compound pollution characteristics and the effects of meteorological factors in Jiangsu Province[J]. China Environmental Science, 2018,38(8):2830-2839.
[36] Marie O, Michal B, Martin N, et al. Influence of air pollution to incident photosynthetically active radiation during clear sky conditions in Ostrava, Czech Republic[J]. Atmospheric Environmet, 2019,215:116910

基金

国家重点研发计划(2018YFB1501103-03);中国气象局大气环境研究所基金(2020SYIAEJY11)

PDF(780 KB)

Accesses

Citation

Detail

段落导航
相关文章

/