D. M. Ricciuto
- ORCiD
- https://orcid.org/0000-0002-3668-3021
- OpenAlex ID
- https://openalex.org/A5083897118 (API record)
Associated Concepts [?]
- Environmental science
- Biology
- Ecology
- Geology
- Physics
- Geography
- Computer science
- Ecosystem
- Atmospheric sciences
- Mathematics
- Chemistry
- Engineering
- Oceanography
- Climatology
- Organic chemistry
- Materials science
- Meteorology
- History
- Archaeology
Authored Works
sorted by decreasing year, and then by display-name
- Spatiotemporal Heterogeneity of Methane Emissions in Peruvian Amazonian Peatlands: A Modeling Approach
- Soil and Stem Carbon Dioxide and Methane Fluxes of an Amazonian Palm Peatland
- Response of wetland ecosystems to increasing frequency of atmospheric fronts
- Photosynthesis phenology, as defined by solar-induced chlorophyll fluorescence, is overestimated by vegetation indices in the extratropical Northern Hemisphere
- Forest Structure and Progressive Nitrogen Limitation in Duke and Oak Ridge FACE Experiments Simulated with ELM-FATES-CNP
- Ecophysiological Impacts of Long-term Whole Ecosystem Warming and Elevated CO2 on a Forested Boreal Bog
- Automating integration of observations and experiments in the E3SM land model
- Taming root systems heterogeneity to reduce Earth System Model uncertainty
- Key parameters under varying phosphorus supply and temperature in the nutrient-enabled land surface model ELM-FATES
- Improving the E3SM Land Model Simulations of Carbon Fluxes for an Amazonian Palm Swamp Peatland
- Improving land model predictions through parameter calibration enabled by machine learning
- Hit twice by the curse of dimensionality: spatio-temporal land model calibration using Karhunen-Loeve and sparse polynomial chaos expansions
- Examining the effects of warming and elevated CO2 on a northern peatland using ELM-SPRUCE
- Evaluation and Parametric Sensitivity of the Nutrient Enabled Ecosystem Model FATES-ELM at a Tropical Testbed
- Decreases in plant carbon use efficiency under whole ecosystem warming and no significant effect with carbon dioxide enrichment within a northern peatland ecosystem
- Combining new advances in modeling dynamic vegetation and nutrient competition to improve boreal forest predictions to changing climate
- An analytical understanding of model uncertainty using matrix approach
Linked Co-Authors
- Alan K. Knapp
- Anping Chen
- Anthony P. Walker
- Benjamin N. Sulman
- Bin Wang
- Colleen M. Iversen
- Dan Lu
- Daniel T. Roman
- Efrén López‐Blanco
- Elizabeth Agee
- Enqing Hou
- Eric J. Ward
- Fenghui Yuan
- Hinsby Cadillo‐Quiroz
- J. D. Wood
- J. K. Shuman
- Jennifer A. Holm
- Jiafu Mao
- Jon M. Wells
- Khachik Sargsyan
- L. L. Bourgeau-Chavez
- Lifen Jiang
- P. E. Thornton
- Paul J. Hanson
- Qing Zhu
- Sophia LaFond‐Hudson
- Timothy J. Griffis
- V. G. Salmon
- Wei Huang
- William J. Riley
- Xiaojuan Yang
- Xinyuan Wei
- Yiqi Luo
- Yu Zhou
Linked Collaborating Institutions
- Aarhus University, Denmark
- Arizona State University
- CAS, Institute of Tibetan Plateau Research
- Chinese Academy of Sciences, Guangzhou
- Clark University, Massachusetts
- Colorado State University
- Cornell University, New York
- Duke University, North Carolina
- Instituto de Investigacion de la Amazonia, Peru
- Jet Propulsion Laboratory
- Korea University, Seoul
- Lawrence Berkeley National Laboratory, California
- Linnaeus University, Kalmar, Sweden
- Massachusetts Institute of Technology
- Michigan Technological University
- National Center for Atmospheric Research, Colorado
- Northern Arizona University
- Oak Ridge National Laboratory, Tennessee
- Rensselaer Polytechnic Institute, New York
- San Diego State University, California
- Sandia National Laboratories, Livermore, California
- Sandia National Laboratories, New Mexico
- Smithsonian Institution
- U.S. Department of Agriculture
- University of California, Berkeley
- University of Edinburgh, UK
- University of Florida
- University of Maine, Orono
- University of Minnesota, Duluth
- University of Minnesota, Twin Cities
- University of Missouri, Columbia
- University of Western Ontario, Canada
Add Incoming Edge
Login via ORCiD to contribute.
Add Outgoing Edge
Login via ORCiD to contribute.