Published January 2011 | Version v1
Journal article

Extreme total solar irradiance due to cloud enhancement at sea level of the NE Atlantic coast of Brazil

  • 1. Facultad de Ciencias Exactas, Ingenieria y Agrimensura, Universidad Nacional de Rosario, Pellegrini 250, 2000 Rosario (Argentina)
  • 2. Instituto de Fisica Rosario (CONICET-Universidad Nacional de Rosario), 27 de Febrero 210bis, 2000 Rosario (Argentina)
  • 3. Facultad Regional Concepcion del Uruguay, Universidad Tecnologica Nacional, Concepcion del Uruguay (Argentina)
  • 4. Grupo de Pesquisas em Fontes Alternativas de Energia, Universidade Federal de Pernambuco, Av. Prof. Luiz Freire, 1000 - 50.740-540, Recife, PE (Brazil)

Description

Extraterrestrial total solar irradiance, usually called Solar Constant, is attenuated by the atmosphere in different proportions, depending mainly on solar zenith angle and altitude of the measurement point. In this work, it is presented very high and extreme horizontal plane measurements of global solar irradiance that in some days overpassed the Solar Constant corrected by the actual Sun-Earth distance (CSC). They were obtained at sea level of the intertropical Atlantic coast, in the city of Recife, Brazil, in the period February 2008-January 2009. Extreme total solar irradiance values larger than CSC were measured during 3.4% of the days of the total registered period. This percentage increases to 7.4% for global solar irradiance within 95.1-100% of the CSC and to 15.3% within 90.1-95% of the CSC. The largest extreme total solar irradiance value, 1477 ± 30 W/m2, was registered the 28th of March 2008 at 11:34 local time (UT - 3h). It overpassed by 7.9% the CSC value for this day (1369.4 W/m2) and by 42.3% the estimated value of the clear sky Iqbal C radiation model (1037.7 W/m2). The observation of extreme values should be taken into account in the study of solar radiation effects related to materials exposed to the outside, UV index and biological effects, among others. Also, the detailed knowledge of this interesting effect may contribute significantly to clarify physical aspects about the interaction of global solar radiation with the ecosystem and climate change. (author)

Availability note (English)

Available from Available from: http://dx.doi.org/10.1016/j.renene.2010.06.009

Additional details

Identifiers

Publishing Information

Journal Title
Renewable Energy
Journal Volume
36
Journal Issue
1
Journal Page Range
p. 409-412
ISSN
0960-1481
CODEN
RNENE3

INIS

Country of Publication
United Kingdom
Country of Input or Organization
United Kingdom
INIS RN
41122849
Subject category
S14: SOLAR ENERGY;
Descriptors DEI
BRAZIL; CLIMATIC CHANGE; ECOSYSTEMS; RADIANT FLUX DENSITY; SEA LEVEL; SHORES; SKY; SOLAR CONSTANT; SOLAR RADIATION; SUN; URBAN AREAS
Descriptors DEC
COASTAL REGIONS; DEVELOPING COUNTRIES; FLUX DENSITY; LATIN AMERICA; LEVELS; MAIN SEQUENCE STARS; RADIATIONS; SOUTH AMERICA; STARS; STELLAR RADIATION

Optional Information

Notes
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