The effect of sun elevation, cloudiness, and altitude on the ultraviolet index in Czechia

IF 0.9 4区 社会学 Q3 GEOGRAPHY Geografie-Sbornik CGS Pub Date : 2021-01-01 DOI:10.37040/GEOGRAFIE.2021.001
Helena Tomanová, L. Pokorná
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Abstract

Ultraviolet (UV) radiation has recently become an important topic in relation to the loss of stratospheric ozone. High doses of UV radiation have a negative effect on many organisms. This paper focuses on the UV index (UVI), which expresses the risk of UV radiation on human health. The aim of the paper is to describe the definition of UVI, and its measurement, and to summarize geographical parameters and meteorological conditions affecting the values of UVI. The effect of sun elevation, cloudiness, and altitude is demonstrated using observed data from the Hradec Králové, Košetice and Labská bouda stations during the period 2011–2017. The results show a strong effect of both sun elevation and cloudiness. The highest values of UVI (up to 8) are generally observed on sunny days around midday from May to July. The reduction of the UVI caused by clouds, fog, and rain is, on average, 85% of values typical for sunny days. The effect of altitude is distinctly weaker; a rise of UVI with increasing altitude is 0.4 per 1 km for clear sky and the surface without snow cover.
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太阳高度、云量和海拔对捷克紫外线指数的影响
最近,紫外线辐射已成为与平流层臭氧损失有关的一个重要话题。高剂量的紫外线辐射对许多生物体有负面影响。本文重点介绍了表达紫外线辐射对人体健康危害的紫外线指数(UVI)。本文的目的是描述紫外线指数的定义和测量,并总结影响紫外线指数的地理参数和气象条件。利用2011-2017年期间hradac Králové、Košetice和labsk bouda站的观测数据,论证了太阳高度、云量和海拔高度的影响。结果表明,太阳高度和云量的影响都很强。紫外线指数的最高值(高达8)一般在五月至七月的晴天中午左右观测到。云、雾和雨造成的紫外线减少平均为晴天典型值的85%。海拔的影响明显较弱;晴空和无积雪地表的紫外线指数随海拔高度的增加为每1公里0.4。
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来源期刊
Geografie-Sbornik CGS
Geografie-Sbornik CGS Social Sciences-Geography, Planning and Development
CiteScore
2.20
自引率
0.00%
发文量
12
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