Improved estimations of gross primary production using satellite‐derived photosynthetically active radiation. Issue 1 (30th January 2014)
- Record Type:
- Journal Article
- Title:
- Improved estimations of gross primary production using satellite‐derived photosynthetically active radiation. Issue 1 (30th January 2014)
- Main Title:
- Improved estimations of gross primary production using satellite‐derived photosynthetically active radiation
- Authors:
- Cai, Wenwen
Yuan, Wenping
Liang, Shunlin
Zhang, Xiaotong
Dong, Wenjie
Xia, Jiangzhou
Fu, Yang
Chen, Yang
Liu, Dan
Zhang, Qiang - Abstract:
- <abstract abstract-type="main"> <title>Abstract</title> <p>Terrestrial vegetation gross primary production (GPP) is an important variable in determining the global carbon cycle as well as the interannual variability of the atmospheric CO<sub>2</sub> concentration. The accuracy of GPP simulation is substantially affected by several critical model drivers, one of the most important of which is photosynthetically active radiation (PAR) which directly determines the photosynthesis processes of plants. In this study, we examined the impacts of uncertainties in radiation products on GPP estimates in China. Two satellite‐based radiation products (GLASS and ISCCP), three reanalysis products (MERRA, ECMWF, and NCEP), and a blended product of reanalysis and observations (Princeton) were evaluated based on observations at hundreds of sites. The results revealed the highest accuracy for two satellite‐based products over various temporal and spatial scales. The three reanalysis products and the Princeton product tended to overestimate radiation. The GPP simulation driven by the GLASS product exhibited the highest consistency with those derived from site observations. Model validation at 11 eddy covariance sites suggested the highest model performance when utilizing the GLASS product. Annual GPP in China driven by GLASS was 5.55 Pg C yr<sup>−1</sup>, which was 68.85%–94.87% of those derived from the other products. The results implied that the high spatial resolution, satellite‐derived<abstract abstract-type="main"> <title>Abstract</title> <p>Terrestrial vegetation gross primary production (GPP) is an important variable in determining the global carbon cycle as well as the interannual variability of the atmospheric CO<sub>2</sub> concentration. The accuracy of GPP simulation is substantially affected by several critical model drivers, one of the most important of which is photosynthetically active radiation (PAR) which directly determines the photosynthesis processes of plants. In this study, we examined the impacts of uncertainties in radiation products on GPP estimates in China. Two satellite‐based radiation products (GLASS and ISCCP), three reanalysis products (MERRA, ECMWF, and NCEP), and a blended product of reanalysis and observations (Princeton) were evaluated based on observations at hundreds of sites. The results revealed the highest accuracy for two satellite‐based products over various temporal and spatial scales. The three reanalysis products and the Princeton product tended to overestimate radiation. The GPP simulation driven by the GLASS product exhibited the highest consistency with those derived from site observations. Model validation at 11 eddy covariance sites suggested the highest model performance when utilizing the GLASS product. Annual GPP in China driven by GLASS was 5.55 Pg C yr<sup>−1</sup>, which was 68.85%–94.87% of those derived from the other products. The results implied that the high spatial resolution, satellite‐derived GLASS PAR significantly decreased the uncertainty of the GPP estimates at the regional scale.</p> </abstract> … (more)
- Is Part Of:
- Journal of geophysical research. Volume 119:Issue 1(2014:Mar.)
- Journal:
- Journal of geophysical research
- Issue:
- Volume 119:Issue 1(2014:Mar.)
- Issue Display:
- Volume 119, Issue 1 (2014)
- Year:
- 2014
- Volume:
- 119
- Issue:
- 1
- Issue Sort Value:
- 2014-0119-0001-0000
- Page Start:
- 110
- Page End:
- 123
- Publication Date:
- 2014-01-30
- Subjects:
- Geobiology -- Periodicals
Biogeochemistry -- Periodicals
Biotic communities -- Periodicals
Geophysics -- Periodicals
577.14 - Journal URLs:
- http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)2169-8961 ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1002/2013JG002456 ↗
- Languages:
- English
- ISSNs:
- 2169-8953
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
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