نتایج جستجو برای: مدل‌های CMIP6

تعداد نتایج: 6162  

2017
William J. Collins Jean-François Lamarque Michael Schulz Olivier Boucher Veronika Eyring Michaela I. Hegglin Amanda Maycock Gunnar Myhre Michael Prather Drew Shindell Steven J. Smith

The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model Intercomparison Project 6 (CMIP6) and is designed to quantify the climate and air quality impacts of aerosols and chemically reactive gases. These are specifically near-term climate forcers (NTCFs: methane, tropospheric ozone and aerosols, and their precursors), nitrous oxide and ozonedepleting hal...

2016
Alex C. Ruane Claas Teichmann Nigel W. Arnell Timothy R. Carter Kristie L. Ebi Katja Frieler Clare M. Goodess Bruce Hewitson Radley Horton R. Sari Kovats Heike K. Lotze Linda O. Mearns Antonio Navarra Dennis S. Ojima Keywan Riahi Cynthia Rosenzweig Katharine Vincent

This paper describes the motivation for the creation of the Vulnerability, Impacts, Adaptation and Climate Services (VIACS) Advisory Board for the Sixth Phase of the Coupled Model Intercomparison Project (CMIP6), its initial activities, and its plans to serve as a bridge between climate change applications experts and climate modelers. The climate change application community comprises research...

2016
Sophie M. J. Nowicki Anthony Payne Eric Larour Helene Seroussi Heiko Goelzer William Lipscomb Jonathan Gregory Ayako Abe-Ouchi Andrew Shepherd

Reducing the uncertainty in the past, present, and future contribution of ice sheets to sea-level change requires a coordinated effort between the climate and glaciology communities. The Ice Sheet Model Intercomparison Project for CMIP6 (ISMIP6) is the primary activity within the Coupled Model Intercomparison Project – phase 6 (CMIP6) focusing on the Greenland and Antarctic ice sheets. In this ...

2016
Brian C. O’Neill Claudia Tebaldi Detlef P. van Vuuren Veronika Eyring Pierre Friedlingstein George Hurtt Reto Knutti Elmar Kriegler Jean-Francois Lamarque Jason Lowe Gerald A. Meehl Richard Moss Keywan Riahi Benjamin M. Sanderson

Projections of future climate change play a fundamental role in improving understanding of the climate system as well as characterizing societal risks and response options. The Scenario Model Intercomparison Project (ScenarioMIP) is the primary activity within Phase 6 of the Coupled Model Intercomparison Project (CMIP6) that will provide multi-model climate projections based on alternative scen...

2017
Chengwei Li Hui Lu Kun Yang Jonathon S. Wright Yingying Chen Xiaomeng Huang Shiming Xu

Land surface models (LSMs) are important tools for simulating energy, water and momentum transfer across the land–atmosphere interface. Many LSMs have been developed over the past 50 years, including the Common Land Model (CoLM), a LSM that has primarily been developed and maintained by Chinese researchers. CoLM has been adopted by several Chinese Earth System Models (GCMs) that will participat...

2016
Tianjun Zhou Andrew G. Turner James L. Kinter Bin Wang Yun Qian Xiaolong Chen Bo Wu Bo Liu Liwei Zou Bian He

The Global Monsoons Model Inter-comparison Project (GMMIP) has been endorsed by the panel of Coupled Model Inter-comparison Project (CMIP) as one of the participating model inter-comparison projects (MIPs) in the sixth phase of CMIP (CMIP6). The focus of GMMIP is on monsoon climatology, variability, prediction and projection, which is relevant to four of the “Grand Challenges” proposed by the W...

2016
Edwin P. Gerber Elisa Manzini

Diagnostics of atmospheric momentum and energy transport are needed to investigate the origin of circulation biases in climate models and to understand the atmospheric response to natural and anthropogenic forcing. Model biases in atmospheric dynamics are one of the factors that increase uncertainty in projections of regional climate, precipitation and extreme events. Here we define requirement...

Journal: :Past Global Changes Magazine 2017

Journal: :Geophysical Research Letters 2020

Journal: :Atmospheric Chemistry and Physics 2021

Abstract. The evolution of tropospheric ozone from 1850 to 2100 has been studied using data Phase 6 the Coupled Model Intercomparison Project (CMIP6). We evaluate long-term changes coupled atmosphere–ocean chemistry–climate models, focusing on CMIP Historical and ScenarioMIP ssp370 experiments, for which detailed tropospheric-ozone diagnostics were archived. model ensemble evaluated against a s...

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