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Project: PCMDI – An Earth System Model Evaluation Project
Title Contact Institution Date
The Relative Importance of Forced and Unforced Temperature Patterns in Driving the Time Variation of Low-Cloud Feedback RGMA Mark Zelinka Lawrence Livermore National Laboratory
Implications of a Pervasive Climate Model Bias for Low‐Cloud Feedback RGMA Mark Zelinka Lawrence Livermore National Laboratory
Cloud Feedbacks Enhance Sea Surface Temperature Variability RGMA Mark Zelinka Lawrence Livermore National Laboratory
Bimodality in Simulated Precipitation Frequency Distributions and its Relationship with Convective Parameterizations RGMA Jiwoo Lee Lawrence Livermore National Laboratory (LLNL)
Predicting the Intensification of Global Precipitation Under Climate Change RGMA Jesse Norris University of California - Los Angeles
Fingerprinting the Pattern of Natural Variability in Recent Global Warming RGMA Hailong Wang Pacific Northwest National Laboratory
Systematic and Objective Evaluation of Earth System Models: PCMDI Metrics Package (PMP) Version 3 RGMA Jiwoo Lee Lawrence Livermore National Laboratory
Using Storm Tracking to Evaluate E3SM RGMA Hsi-Yen Ma Lawrence Livermore National Laboratory
Contributions from Cloud Regime Changes to the Observed Cloud Feedback RGMA Mark Zelinka Lawrence Livermore National Laboratory
Observational Constraint on a Feedback from Supercooled Clouds Reduces Projected Warming Uncertainty RGMA Mark Zelinka Lawrence Livermore National Laboratory
Evaluating Cloud Feedback Components in Observations and Their Representation in Climate Models RGMA Li-Wei Chao Lawrence Livermore National Laboratory
Truly Conserving with Conservative Remapping Methods RGMA Karl E. Taylor Lawrence Livermore National Laboratory
Causes of Reduced Climate Sensitivity in E3SM from Version 1 to Version 2 RGMA Po-Lun Ma Pacific Northwest National Laboratory
Summertime Near-Surface Temperature Biases Over the Central United States in Convection-Permitting Simulations RGMA Hsi-Yen Ma Lawrence Livermore National Laboratory
Steady Global Surface Warming Through 2022, After a Recent Step Up in Warming Rate RGMA Mark Zelinka Lawrence Livermore National Laboratory
Patterns of Surface Warming Matter for Climate Sensitivity RGMA Mark Zelinka Lawrence Livermore National Laboratory (LLNL)
Revisiting a Constraint on Equilibrium Climate Sensitivity From a Last Millennium Perspective RGMA Chad Thackeray University of California Los Angeles (UCLA)
Explainable Neural Networks Can Identify Decadal Variability in Midlatitude Subseasonal Forecasts of Opportunity Provided by the Tropics RGMA Marybeth C. Arcodia Colorado State University
Comparison of Methods to Estimate Aerosol Effective Radiative Forcings in Climate Models RGMA Mark Zelinka Lawrence Livermore National Laboratory (LLNL)
Human-Driven Ocean Change: More Than Just Warming RGMA Paul J. Durack Lawrence Livermore National Laboratory (LLNL)
Contributions to Regional Precipitation Change and its Polar-Amplified Pattern Under Warming RGMA Mark Zelinka Lawrence Livermore National Laboratory (LLNL)
CERESMIP: Investigating Recent Trends in Earth’s Energy Imbalance (EEI) RGMA Paul Durack (LLNL) and Brian Medeiros (NCAR) Lawrence Livermore National Laboratory (LLNL)
Observational Constraints on the Cloud Feedback Pattern Effect RGMA Mark Zelinka Lawrence Livermore National Laboratory (LLNL)
Rapidly Evolving Aerosol Emissions are a Dangerous Omission from Near-Term Climate Risk Assessments RGMA Geeta Persad University of Texas at Austin
Human Fingerprints in the Sky RGMA Stephen Po-Chedley Lawrence Livermore National Laboratory (LLNL)
Ocean Property Transformation as a Climate Evaluator RGMA Paul J. Durack Lawrence Livermore National Laboratory (LLNL)
Explaining Forcing Efficacy With Pattern Effect and State Dependence RGMA Mark Zelinka Lawrence Livermore National Laboratory (LLNL)
Data-Driven Predictions of the Time Remaining Until Critical Global Warming Thresholds are Reached RGMA Elizabeth A. Barnes Colorado State University
Spring Regional Sea Surface Temperatures as a Precursor of European Summer Heatwaves RGMA Elizabeth A. Barnes Colorado State University
Mechanisms of Global Drought Intensification in the 21st Century RGMA Jesse Norris University of California Los Angeles (UCLA)

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