Zobrazeno 1 - 10
of 214
pro vyhledávání: '"D. Schimel"'
Publikováno v:
AGU Advances, Vol 5, Iss 2, Pp n/a-n/a (2024)
Abstract Since 2007, the National Academy for Sciences Engineering and Medicine (NASEM) has recommended Earth Science research and investment priorities every 10 years. The Decadal Survey balances the continuation of essential climate variable time s
Externí odkaz:
https://doaj.org/article/d4289f59bb22495eb6b0d6033475c49b
Autor:
J. Liu, L. Baskaran, K. Bowman, D. Schimel, A. A. Bloom, N. C. Parazoo, T. Oda, D. Carroll, D. Menemenlis, J. Joiner, R. Commane, B. Daube, L. V. Gatti, K. McKain, J. Miller, B. B. Stephens, C. Sweeney, S. Wofsy
Publikováno v:
Earth System Science Data, Vol 13, Pp 299-330 (2021)
Here we present a global and regionally resolved terrestrial net biosphere exchange (NBE) dataset with corresponding uncertainties between 2010–2018: Carbon Monitoring System Flux Net Biosphere Exchange 2020 (CMS-Flux NBE 2020). It is estimated usi
Externí odkaz:
https://doaj.org/article/45537c016e0340b8af3b966af3ae45a6
Autor:
S. Crowell, D. Baker, A. Schuh, S. Basu, A. R. Jacobson, F. Chevallier, J. Liu, F. Deng, L. Feng, K. McKain, A. Chatterjee, J. B. Miller, B. B. Stephens, A. Eldering, D. Crisp, D. Schimel, R. Nassar, C. W. O'Dell, T. Oda, C. Sweeney, P. I. Palmer, D. B. A. Jones
Publikováno v:
Atmospheric Chemistry and Physics, Vol 19, Pp 9797-9831 (2019)
The Orbiting Carbon Observatory-2 has been on orbit since 2014, and its global coverage holds the potential to reveal new information about the carbon cycle through the use of top-down atmospheric inversion methods combined with column average CO2 re
Externí odkaz:
https://doaj.org/article/2a2009db44ed40e6bf6fa8c0121fe23e
Autor:
B. Gaubert, B. B. Stephens, S. Basu, F. Chevallier, F. Deng, E. A. Kort, P. K. Patra, W. Peters, C. Rödenbeck, T. Saeki, D. Schimel, I. Van der Laan-Luijkx, S. Wofsy, Y. Yin
Publikováno v:
Biogeosciences, Vol 16, Pp 117-134 (2019)
We have compared a suite of recent global CO2 atmospheric inversion results to independent airborne observations and to each other, to assess their dependence on differences in northern extratropical (NET) vertical transport and to identify some of t
Externí odkaz:
https://doaj.org/article/1da8c76ea27142b5b1ce5368e71590e7
Autor:
P. Ciais, A. J. Dolman, A. Bombelli, R. Duren, A. Peregon, P. J. Rayner, C. Miller, N. Gobron, G. Kinderman, G. Marland, N. Gruber, F. Chevallier, R. J. Andres, G. Balsamo, L. Bopp, F.-M. Bréon, G. Broquet, R. Dargaville, T. J. Battin, A. Borges, H. Bovensmann, M. Buchwitz, J. Butler, J. G. Canadell, R. B. Cook, R. DeFries, R. Engelen, K. R. Gurney, C. Heinze, M. Heimann, A. Held, M. Henry, B. Law, S. Luyssaert, J. Miller, T. Moriyama, C. Moulin, R. B. Myneni, C. Nussli, M. Obersteiner, D. Ojima, Y. Pan, J.-D. Paris, S. L. Piao, B. Poulter, S. Plummer, S. Quegan, P. Raymond, M. Reichstein, L. Rivier, C. Sabine, D. Schimel, O. Tarasova, R. Valentini, R. Wang, G. van der Werf, D. Wickland, M. Williams, C. Zehner
Publikováno v:
Biogeosciences, Vol 11, Iss 13, Pp 3547-3602 (2014)
A globally integrated carbon observation and analysis system is needed to improve the fundamental understanding of the global carbon cycle, to improve our ability to project future changes, and to verify the effectiveness of policies aiming to reduce
Externí odkaz:
https://doaj.org/article/b9c96a06f6cd414f8b1b02734e0ce259
Autor:
A. M. Raiho, K. Cawse‐Nicholson, A. Chlus, J. Dozier, M. Gierach, K. Miner, F. Schneider, D. Schimel, S. Serbin, A. N. Shiklomanov, D. R. Thompson, P. A. Townsend, S. Zareh, M. Skiles, B. Poulter
Publikováno v:
Journal of Geophysical Research: Biogeosciences. 128
Akademický článek
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Autor:
K. Cawse-Nicholson, A.M. Raiho, D.R. Thompson, G.C. Hulley, C.E. Miller, K.R. Miner, B. Poulter, D. Schimel, F.D. Schneider, P.A. Townsend, S.K. Zareh
Publikováno v:
Remote Sensing of Environment. 290:113534
Autor:
K. Cawse‐Nicholson, A. M. Raiho, D. R. Thompson, G. C. Hulley, C. E. Miller, K. R. Miner, B. Poulter, D. Schimel, F. D. Schneider, P. A. Townsend, S. K. Zareh
Publikováno v:
Journal of geophysical research. Biogeosciences. 127(8)
High-resolution space-based spectral imaging of the Earth's surface delivers critical information for monitoring changes in the Earth system as well as resource management and utilization. Orbiting spectrometers are built according to multiple design
Autor:
Junjie Liu, Ian Fenty, Chris Hill, D. Schimel, Christian Rödenbeck, Michelle M. Gierach, Hong Zhang, Dustin Carroll, T. Van der Stocken, Oliver Jahn, Peter Landschützer, John D. Naviaux, M. Manizza, Jess F. Adkins, Dimitris Menemenlis, Stephanie Dutkiewicz, Kevin W. Bowman, Holger Brix, Jonathan Maitland Lauderdale
Publikováno v:
Journal of Advances in Modeling Earth Systems
Journal of Advances in Modeling Earth Systems, Vol 12, Iss 10, Pp n/a-n/a (2020)
Carroll, D.; Menemenlis, D.; Adkins, J.; Bowman, K.; Brix, H.; Dutkiewicz, S.; Fenty, I.; Gierach, M.; Hill, C.; Jahn, O.; Landschützer, P.; Lauderdale, J.; Liu, J.; Manizza, M.; Naviaux, J.; Rödenbeck, C.; Schimel, D.; Van der Stocken, T.; Zhang, H.: The ECCO-Darwin Data-Assimilative Global Ocean Biogeochemistry Model: Estimates of Seasonal to Multidecadal Surface Ocean pCO2 and Air-Sea CO2 Flux. In: Journal of Advances in Modeling Earth Systems. Vol. 12 (2020) 10, e2019MS001888. (DOI: /10.1029/2019MS001888)
Journal Of Advances In Modeling Earth Systems (Amer Geophysical Union), 2020-10, Vol. 12, N. 10, P. e2019MS001888 (28p.)
Journal of Advances in Modeling Earth Systems, Vol 12, Iss 10, Pp n/a-n/a (2020)
Carroll, D.; Menemenlis, D.; Adkins, J.; Bowman, K.; Brix, H.; Dutkiewicz, S.; Fenty, I.; Gierach, M.; Hill, C.; Jahn, O.; Landschützer, P.; Lauderdale, J.; Liu, J.; Manizza, M.; Naviaux, J.; Rödenbeck, C.; Schimel, D.; Van der Stocken, T.; Zhang, H.: The ECCO-Darwin Data-Assimilative Global Ocean Biogeochemistry Model: Estimates of Seasonal to Multidecadal Surface Ocean pCO2 and Air-Sea CO2 Flux. In: Journal of Advances in Modeling Earth Systems. Vol. 12 (2020) 10, e2019MS001888. (DOI: /10.1029/2019MS001888)
Journal Of Advances In Modeling Earth Systems (Amer Geophysical Union), 2020-10, Vol. 12, N. 10, P. e2019MS001888 (28p.)
Quantifying variability in the ocean carbon sink remains problematic due to sparse observations and spatiotemporal variability in surface ocean pCO2. To address this challenge, we have updated and improved ECCO‐Darwin, a global ocean biogeochemistr
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8c76b95de5b9a1e053c787f833855b84
https://hdl.handle.net/21.11116/0000-0007-567F-B21.11116/0000-0007-5681-6
https://hdl.handle.net/21.11116/0000-0007-567F-B21.11116/0000-0007-5681-6