Open AccessDOI
Technical Description of version 4.0 of the Community Land Model (CLM)
W. Oleson,Mark Lawrence,B. Bonan,G. Flanner,Erik Kluzek,J. Lawrence,Samuel Levis,C. Swenson,E. Thornton,Aiguo Dai,Mark Decker,Robert E. Dickinson,Johannes J. Feddema,L. Heald,Forrest M. Hoffman,Jean-Francois Lamarque,Natalie M. Mahowald,Guo Yue Niu,Taotao Qian,James T. Randerson,S. W. Running,Koichi Sakaguchi,Andrew G. Slater,Reto Stöckli,Aihui Wang,Zong-Liang Yang,Xiaodong Zeng,Xubin Zeng +27 more
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The article was published on 2010-01-01 and is currently open access. It has received 1104 citations till now.read more
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Erratum: Increasing stomatal conductance in response to rising atmospheric CO2
Conor Purcell,Sven P. Batke,Charilaos Yiotis,Rodrigo Caballero,Wuu Kuang Soh,Michelle Murray,Jennifer C. McElwain +6 more
TL;DR: This paper presents a probabilistic analysis of the response of the immune system to carbon dioxide in response to climate change and shows clear patterns of decline in the number of immune responses to CO2.
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Comprehensive Study on the Influence of Evapotranspiration and Albedo on Surface Temperature Related to Changes in the Leaf Area Index
TL;DR: In this paper, the authors focused on the comprehensive influence of evapotranspiration and albedo on surface temperature by changing the leaf area index (LAI) between 30°-90°N.
Journal ArticleDOI
Nonequilibrium Fractionation During Ice Cloud Formation in iCAM5: Evaluating the Common Parameterization of Supersaturation as a Linear Function of Temperature
TL;DR: In this article, the isotope-enabled version of CAM5 is used to compute non-equilibrium fractionation in ice and mixed-phase clouds based on Si from the CAM5 microphysics, and use it to evaluate the common param25 eterization of Si.
Journal ArticleDOI
Nine time steps: ultra-fast statistical consistency testing of the Community Earth System Model (pyCECT v3.0)
TL;DR: This work extends the CESM-ECT suite with an inexpensive and robust test for ensemble consistency that is applied to Community Atmospheric Model (CAM) output after only nine model time steps and demonstrates that adequate ensemble variability is achieved with instantaneous variable values at the ninth step, despite rapid perturbation growth and heterogeneous variable spread.
Journal ArticleDOI
Simulated global climate response to tropospheric ozone-induced changes in plant transpiration
Stephen R. Arnold,Danica Lombardozzi,Jean-Francois Lamarque,Thomas Richardson,Louisa K. Emmons,Simone Tilmes,Stephen Sitch,Gerd A. Folberth,Michael Hollaway,M. Val Martin +9 more
TL;DR: In this article, the authors use an Earth system model to show that global transpiration response to near-present-day surface tropospheric ozone results in large-scale global perturbations to net outgoing long-wave and incoming shortwave radiation.
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