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Modeling the spatiotemporal variability in subsurface thermal regimes across a low-relief polygonal tundra landscapeModeling the spatio-temporal variability in subsurface thermal regimes across a low-relief polygonal tundra landscape: Modeling Archive, Kumar, Jitendra, Collier Nathan, Bisht Gautam, Mills Richard T., Thornton Peter E., Iversen Colleen M., and Romanovsky Vladimir , The Cryosphere, Jan-01-2016, Volume 10, Issue 5, p.2241 - 2274, (2016)
A simplified, data-constrained approach to estimate the permafrost carbon–climate feedback, Koven, C. D., Schuur E. A. G., del C. ä, Bohn T. J., Burke E. J., Chen G., Chen X., Ciais P., Grosse G., Harden J. W., et al. , Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, Jan-11-2016, Volume 373, Issue 2054, (2015)
Permafrost carbon−climate feedback is sensitive to deep soil carbon decomposability but not deep soil nitrogen dynamics, Koven, Charles D., Lawrence David M., and Riley William J. , Proceedings of the National Academy of Sciences, Sep-03-2015, p. 3752 – 3757, (2015)
Permafrost carbon-climate feedbacks accelerate global warming, Koven, C. D., Ringeval B., Friedlingstein P., Ciais P., Cadule P., Khvorostyanov D., Krinner G., and Tarnocai C. , Proceedings of the National Academy of Sciences, Jun-09-2011, Volume 108, Issue 36, p.14769 - 14774, (2011)
Three-phase numerical model for subsurface hydrology in permafrost-affected regions (PFLOTRAN-ICE v1.0), Karra, S., Painter S. L., and Lichtner P. C. , The Cryosphere, Jan-01-2014, Volume 8, Issue 5, p.1935 - 1950, (2014)