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Modeling clear-sky solar radiation across a range of elevations in Hawai‘i: Comparing the use of input parameters at different temporal resolutions

Dates

Creation
2017-08-21 22:00:22
Last Update
2017-08-21 22:00:22
Publication Date
2012-01-19

Citation

Ryan J. Longman(Author), Thomas Giambelluca(Author), Abby Frazier(Author), 2017-08-21(creation), 2017-08-21(lastUpdate), 2012-01-19(Publication), Modeling clear-sky solar radiation across a range of elevations in Hawai‘i: Comparing the use of input parameters at different temporal resolutions

Summary

Estimates of clear sky global solar irradiance using the parametric model SPCTRAL2 were tested against clear sky radiation observations at four sites in Hawai‘i using daily, mean monthly, and 1 year mean model parameter settings. Atmospheric parameters in SPCTRAL2 and similar models are usually set at site-specific values and are not varied to represent the effects of fluctuating humidity, aerosol amount and type, or ozone concentration, because time-dependent atmospheric parameter estimates are not available at most sites of interest. In this study, we sought to determine the added value of using time dependent as opposed to fixed model input parameter settings. At the AERONET site, Mauna Loa Observatory (MLO) on the island of Hawai‘i, [...]

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  • LC MAP - Landscape Conservation Management and Analysis Portal
  • Pacific Islands Climate Change Cooperative

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Additional Information

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Type Scheme Key
DOI https://www.sciencebase.gov/vocab/category/item/identifier 10.1029/2011JD016388.

Citation Extension

citationTypepublication
journalJOURNAL OF GEOPHYSICAL RESEARCH
languageeng
noteCitation: Longman, R. J., T. W. Giambelluca, and A. G. Frazier (2012), Modeling clear-sky solar radiation across a range of elevations in Hawai‘i: Comparing the use of input parameters at different temporal resolutions, J. Geophys. Res., 117, D02201, doi:10.1029/2011JD016388.

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