William D. Collins
- ORCiD
- https://orcid.org/0000-0002-4463-9848
- OpenAlex ID
- https://openalex.org/A5072814544 (API record)
Associated Concepts [?]
- Environmental science
- Physics
- Geography
- Geology
- Meteorology
- Climatology
- Biology
- Oceanography
- Ecology
- Atmospheric sciences
- Climate change
- Quantum mechanics
- Computer science
- Climate model
- Mathematics
- Engineering
- Chemistry
- Optics
- Organic chemistry
- Thermodynamics
- Astronomy
- Radiative transfer
- Precipitation
- Aerosol
- Operating system
Authored Works
sorted by decreasing year, and then by display-name
- Tropical Cyclone Frequency: The Role of Seeds and the Large-Scale Environment (Invited)
- Representation of Northern Pacific Atmospheric River Flavors in CESM2 Large Ensemble
- Contrasting Responses of Atlantic and Pacific Tropical Cyclone Activity to Atlantic Multidecadal Variability
- Constraining Future Projections of Atmospheric Rivers using Poleward Latent Energy Transport
- Asymmetric hemispheric decline of American Cordillera snowpack with future warming
- Anthropogenic Aerosols Mask Increases in US Rainfall by Greenhouse Gases
- A Storm-Resolving Data Set for Development of Next-Generation Atmospheric Models
- The Influence of Ocean Coupling on Simulated and Projected Tropical Cyclone Precipitation in the HighResMIPPRIMAVERA Simulations
- Short-Lived Climate Forcers
- Evidence of a low-to-no snow future and its impacts on water resources in the western United States
- Detection and Attribution of Regional Precipitation Change with Granger Causality: Overcoming Limited Observations, Modeling Uncertainty, and Large Internal Variability
- Detection and Attribution of Regional Precipitation Change with Granger Causality: Approaches to Short- and Long-Lived Climate Forcers
- Contrasting Windy and Wet Atmospheric Rivers: Characteristics and Variability
- Constraining Future Projections of Atmospheric Rivers using Moist Static Energy Transport
- Characterizing the size of Atmospheric Rivers using a perspective independent from the detection algorithm
- A Storm-Resolving Data Set for Analysis of Precipitation at its Native Scale, Diagnosis of Cloud-Resolving Models, and Development of Next-Generation Parameterizations
Linked Co-Authors
- Alan M. Rhoades
- Astrid Kiendler‐Scharr
- Benjamin J. Hatchett
- Christina M. Patricola
- Christina Tague
- Christine A. Shields
- Colin M. Zarzycki
- D. Feldman
- Derrick Kwadwo Danso
- Edward Molter
- Emily Bercos‐Hickey
- Erica R. Siirila‐Woodburn
- Hong Liao
- Huanping Huang
- Héctor Alejandro Inda Díaz
- Julia Szinai
- Laura Gallardo
- Laurie S. Huning
- Mark D. Risser
- Michael Wehner
- P. A. Ullrich
- P. Artaxo
- Sophie Szopa
- T. A. O’Brien
- Vaishali Naik
- Zhiyong Yang
Linked Collaborating Institutions
- Aristotle University of Thessaloniki, Greece
- California State University, Long Beach
- Chinese Academy of Sciences, Beijing
- Colorado State University
- Dartmouth College, New Hampshire
- Desert Research Institute
- Helmholtz Research Center, Julich
- International Centre for Integrated Mountain Development, Nepal
- Iowa State University
- Laboratoire des Sciences du Climat et de l'Environnement
- Lawrence Berkeley National Laboratory, California
- Leibniz Institute for Applied Geosciences, Hannover
- Nanjing University of Information Science and Technology, China
- National Center for Atmospheric Research, Colorado
- Pennsylvania State University
- University of California, Berkeley
- University of California, Davis
- University of California, Santa Barbara
- University of Chile
- University of Oslo, Norway
- University of Sao Paulo, Brazil
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