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DOI10.3390/atmos8080153
Comparison of Five Modeling Approaches to Quantify and Estimate the Effect of Clouds on the Radiation Amplification Factor (RAF) for Solar Ultraviolet Radiation
Hall, Eric S.
发表日期2017-08-01
ISSN2073-4433
卷号8期号:8
英文摘要

A generally accepted value for the Radiation Amplification Factor (RAF), with respect to the erythemal action spectrum for sunburn of human skin, is -1.1, indicating that a 1.0% increase in stratospheric ozone leads to a 1.1% decrease in the biologically damaging UV radiation in the erythemal action spectrum reaching the Earth. The RAF is used to quantify the non-linear change in the biologically damaging UV radiation in the erythemal action spectrum as a function of total column ozone (O-3). Spectrophotometer measurements recorded at ten US monitoring sites were used in this analysis, and over 71,000 total UVR measurement scans of the sky were collected at those 10 sites between 1998 and 2000 to assess the RAF value. This UVR dataset was examined to determine the specific impact of clouds on the RAF. Five de novo modeling approaches were used on the dataset, and the calculated RAF values ranged from a low of -0.80 to a high of -1.38.


英文关键词Radiation Amplification Factor (RAF);solar zenith angle (SZA);Dobson Unit (DU);ultraviolet (UV);ultraviolet radiation (UVR);cloudiness
语种英语
WOS记录号WOS:000408757800017
来源期刊ATMOSPHERE
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/62129
作者单位US EPA, Natl Exposure Res Lab, Off Res & Dev, Mail Drop E205-03,109 TW Alexander Dr, Res Triangle Pk, NC 27711 USA
推荐引用方式
GB/T 7714
Hall, Eric S.. Comparison of Five Modeling Approaches to Quantify and Estimate the Effect of Clouds on the Radiation Amplification Factor (RAF) for Solar Ultraviolet Radiation[J]. 美国环保署,2017,8(8).
APA Hall, Eric S..(2017).Comparison of Five Modeling Approaches to Quantify and Estimate the Effect of Clouds on the Radiation Amplification Factor (RAF) for Solar Ultraviolet Radiation.ATMOSPHERE,8(8).
MLA Hall, Eric S.."Comparison of Five Modeling Approaches to Quantify and Estimate the Effect of Clouds on the Radiation Amplification Factor (RAF) for Solar Ultraviolet Radiation".ATMOSPHERE 8.8(2017).
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