期刊文献+

Statistical Relationship Between UVB(280-320nm) and Broadband Solar Radiation(295-2800nm) at a Subtropical Location(Qena,Egypt)

Statistical Relationship Between UVB(280-320nm) and Broadband Solar Radiation(295-2800nm) at a Subtropical Location(Qena,Egypt)
下载PDF
导出
摘要 The present study quantifies the relationship between ultraviolet-B(UVB) and broadband solar radiation(G) at Qena,Egypt.Data from 10-year hourly integrated totals for both UVB and G on a horizontal surface were used to determine the best fit between the two radiation types.On the basis of the correlation of determination(r2),a second-order polynomial was determined to provide the best fit.For the purpose of developing an empirical model to estimate UVB,all of the cases of UVB and G from a nine-year study from 2001 to 2009 were introduced.Monthly and seasonal empirical models,as well as a general expression,were established for UVB as a function of G.The values of r2 ranged from 0.90 to 0.97.By using a new dataset of G,the estimated and the corresponding measured values of UVB were determined to be in good agreement whereby the values of r2 between the two ranged from 0.91 to 0.98.In addition,the significance and performance of the regression forms were evaluated with the aid of several statistical analysis procedures.The values of the index of modeling(d) and coefficient of modeling efficiency(ME) were close to one.Moreover,the values of RMSE,mean bias error(MBE),and mean absolute error(MAE) were lower than the experimental errors.On the basis of this analysis,it has been determined that the suggested regression forms can be used to estimate UVB when it difficult to obtain measurements or when measurements are available only for limited periods at the studied region. The present study quantifies the relationship between ultraviolet-B (UVB) and broadband solar radiation (G) at Qena, Egypt. Data from 10-year hourly integrated totals for both UVB and G on a horizontal surface were used to determine the best fit between the two radia- tion types. On the basis of the correlation of determination (r2), a second-order polynomial was determined to pro- vide the best fit. For the purpose of developing an em- pirical model to estimate UVB, all of the cases of UVB and G from a nine-year study from 2001 to 2009 were introduced. Monthly and seasonal empirical models, as well as a general expression, were established for UVB as a function of G. The values ofr2 ranged from 0.90 to 0.97 By using a new dataset of G, the estimated and the corresponding measured values of UVB were determined to be in good agreement whereby the values of r2 between the two ranged from 0.91 to 0.98. In addition, the significance and performance of the regression forms were evaluated with the aid of several statistical analysis procedures. The values of the index of modeling (d) and coefficient of modeling efficiency (ME) were close to one. Moreover, the values of RMSE, mean bias error (MBE), and mean absolute error (MAE) were lower than the experimental errors. On the basis of this analysis, it has been determined that the suggested regression forms can be used to estimate UVB when it difficult to obtain measurements or when measurements are available only for limited periods at the studied region.
出处 《Atmospheric and Oceanic Science Letters》 CSCD 2013年第4期173-178,共6页 大气和海洋科学快报(英文版)
基金 the Program Research Center at Arabic Language Institute,Deanship of Scien-tific Research,King Saud University,Riyadh,Saudi Arabia,for funding and supporting this research
关键词 太阳辐射 UVB 统计关系 埃及 宽带 亚热带 纳米 位置 UVB solar radiation, broadband solar radia- tion, empirical model, Egypt
  • 相关文献

参考文献2

二级参考文献51

  • 1Adam, M. E.-N., 2010: Effect of stratospheric ozone in UVB solar radiation reaching the Earth's surface at Qena, Egypt, Atmos. Poll. Res., 1,155-160.
  • 2Adam, M. E.-N., and M. E1 Shazely, 2007: Attenuation of UVB radiation in the atmosphere: Clouds effects at Qena (Egypt), At- mos. Environ., 41, 4856-4864.
  • 3Adam, M. E.-N, and M. El Shazely, 2008: Diurnal variation ofatmospheric stability at Qena (upper Egypt), Mausam, Quart J.lndia Meteorological Service, 59, 69-76.
  • 4Bais, A. F., C. S. Zerefos, C. Meletie, et al., 1993: Spectral meas-urements of solar UV-B radiation and its relations to total ozone,SO2 and clouds, J. Geophys. Res., 98, 5199-5204.
  • 5Calba, J., D. Pagrs, and J. A. Gonzalez, 2005: Empirical studies of cloud effects on UV radiation: A review, Rev. Geophys., 43, 1-28.
  • 6Diffey, B. L., 1991: Solar ultraviolet radiation effects on biological systems, Rev. Phys. Med. Biol., 36, 299-328.
  • 7Dubrovsky, M., 1998: The dependence of the solar UV-B radiation on total ozone and solar zenith angle, available on http://www. ufa.cas.cz/dub/uv-o3/egs98-uv.htm.
  • 8Dubrovsky, M., 2000: Analysis of UV-B irradiances measured si- multaneously at two stations in the Czech Republic, J. Geophys. Res., 105, 4907-4913.
  • 9E1-Metwally, M., 2004: Simple new methods to estimate global solar radiation based on meteorological data in Egypt, Atmos. Res., 69, 217-239.
  • 10El-Nashar, A. M., 1991: Solar radiation characteristics in ABU DHABI, Solar Energy, 47, 49-55.

共引文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部