Sha Feng
- ORCiD
- https://orcid.org/0000-0002-2376-0868
- OpenAlex ID
- https://openalex.org/A5019078558 (API record)
Associated Concepts [?]
- Physics
- Engineering
- Geography
- Geology
- Environmental science
- Computer science
- Biology
- Meteorology
- Chemistry
- Thermodynamics
- Organic chemistry
- Oceanography
- Ecology
- Mathematics
- Quantum mechanics
- Atmospheric sciences
- Climatology
- Mechanics
- Aerospace engineering
- Mechanical engineering
- Materials science
- History
- Archaeology
Authored Works
sorted by decreasing year, and then by display-name
- Regional Inverse Modeling in North and South America for the NASA Carbon Monitoring System - Follow-On
- Preparing the global CMS Flux system for application to carbon flux inventories via regional-scale, observation-based evaluations
- Monitoring urban CO2 emissions from space: insights from NASA's Orbiting Carbon Observatory-3 (OCO-3) mission
- Impact of the Expanded In-Situ Measurement Network on the Diagnosis of North American Methane Fluxes
- How can we use comprehensive ensembles to improve regional carbon flux estimation?
- Estimating NOx emissions with numerical modeling and deep learning estimated complete surface NO2 map
- Characterization of North American hub-height wind speed and power production at sub-seasonal to seasonal timescales using weather regime analysis
- Application of PRIM (Patient Rule Induction Method) for understanding patterns in CO2 model-observation differences
- Reconciliation of asynchronous satellite-based NO2 and anthropogenic XCO2 enhancements with WRF-Chem over two metropolitan areas
- Preparing the global CMS Flux system for application to carbon flux inventories via regional-scale, observation-based evaluations
- Overview of land-atmosphere biogeochemistry developments in the E3SMv1.1-BGC model
- Joint CO2 Mole Fraction and Flux Analysis Confirms Missing Processes in CASA Terrestrial Carbon Uptake over North America
- Impacts of the spatial heterogeneity of atmospheric CO2 concentration on carbon-climate feedbacks
- GDESS: A Framework for Evaluating Simulated Atmospheric CO2 in Earth System Models
- Do global inversion systems systematically underestimate the seasonal amplitude of net ecosystem CO2 flux?
Linked Co-Authors
- A. Anthony Bloom
- A. E. Andrews
- A. E. Schuh
- A. Karion
- Abhishek Chatterjee
- Bryce E. Harrop
- Daniel E. Kaufman
- Daniel Wesloh
- Dien Wu
- Dustin Roten
- F. Chevallier
- Grant M. Domke
- Huilin Huang
- Ian T. Baker
- J. B. Miller
- John C. Lin
- Junjie Liu
- Katherine Calvin
- Kenneth J. Davis
- Kimberly Mueller
- L. Ruby Leung
- Li Zhang
- Masoud Ghahremanloo
- Matthew S. Johnson
- Michael C. Dietze
- P. J. Cameron-Smith
- P. J. Rayner
- P. O. Wennberg
- Qi Tang
- Ruixue Lei
- Sam J. Silva
- Sean Crowell
- Sharon Gourdji
- Sourish Basu
- Stephen M. Ogle
- Susannah M. Burrows
- T. Oda
- T. Taylor
- Thomas Lauvaux
- Tobias Gerken
- Vivienne H. Payne
- Ye Liu
- Yu Zhou
- Yun Qian
- Yunsoo Choi
- Z. Barkley
Linked Collaborating Institutions
- Boston University, Massachusetts
- California Institute of Technology
- Central Michigan University
- Clark University, Massachusetts
- Colorado State University
- Cornell University, New York
- Dartmouth College, New Hampshire
- James Madison University, Virginia
- Jet Propulsion Laboratory
- Johns Hopkins University, Maryland
- Laboratoire des Sciences du Climat et de l'Environnement
- Lawrence Livermore National Laboratory, California
- NASA Ames Research Center
- NASA Goddard Space Flight Center, Maryland
- National Autonomous University of Mexico
- National Institute of Standards and Technology, Maryland
- National Oceanic and Atmospheric Administration, Boulder
- Pacific Northwest National Laboratory
- Pennsylvania State University
- Universite de Reims, France
- University of Houston, Texas
- University of Maryland, College Park
- University of Melbourne, Australia
- University of Oklahoma, Norman
- University of Toronto, Canada
- University of Utah
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