CAS-ESM2.0 Model Datasets for the CMIP6 Flux-Anomaly-Forced Model Intercomparison Project (FAFMIP)

CAS-ESM2.0 Model Datasets for the CMIP6 Flux-Anomaly-Forced Model Intercomparison Project (FAFMIP)
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CMIP6 通量异常强迫模型比对项目 (FAFMIP) 的 CAS-ESM2.0 模型数据集

DOI:
10.1007/s00376-020-0188-2
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发表时间:
2021
影响因子:
5.8
通讯作者:
Xiao Dong
Xiao Dong
中科院分区:
地球科学2区
文献类型:
--
作者:
Jiangbo Jin;He Zhang;Xiao Dong

文献摘要

相似文献

中国科学院地球系统模式第二版(CAS-ESM2.0)正在参与耦合模式比对项目(CMIP6)第六阶段的通量异常强迫模型比对项目(FAFMIP)实验。 FAFMIP 的目的是了解和减少海洋气候变化的不确定性,以应对大气-海洋环流模型 (AOGCM) 中二氧化碳强迫的增加,包括模拟海洋热含量 (OHC) 变化、海洋环流变化和热膨胀导致的海平面上升。已进行 FAFMIP 实验(包括 faf-heat、faf-stress、faf-water、faf-all、faf-passiveheat、faf-heat-NA50pct 和 faf-heat-NA0ct)。所有实验均经过70年时间的整合,相应数据已上传至地球系统网格联邦数据服务器,供CMIP6用户下载。本文描述了实验设计和模型数据集,并评估了 FAFMIP 实验中 CAS-ESM2.0 模拟海洋气候变化的初步结果。对全球海洋温度、大西洋经向翻转环流(AMOC)、OHC.和动态海平面(DSL)变化的模拟均得到合理再现。
The second version of the Chinese Academy of Sciences Earth System Model (CAS-ESM2.0) is participating in the Flux-Anomaly-Forced Model Intercomparison Project (FAFMIP) experiments in phase 6 of the Coupled Model Intercomparison Project (CMIP6). The purpose of FAFMIP is to understand and reduce the uncertainty of ocean climate changes in response to increased CO2 forcing in atmosphere-ocean general circulation models (AOGCMs), including the simulations of ocean heat content (OHC) change, ocean circulation change, and sea level rise due to thermal expansion. FAFMIP experiments (including faf-heat, faf-stress, faf-water, faf-all, faf-passiveheat, faf-heat-NA50pct and faf-heat-NA0ct) have been conducted. All of the experiments were integrated over a 70-year period and the corresponding data have been uploaded to the Earth System Grid Federation data server for CMIP6 users to download. This paper describes the experimental design and model datasets and evaluates the preliminary results of CAS-ESM2.0 simulations of ocean climate changes in the FAFMIP experiments. The simulations of the changes in global ocean temperature, Atlantic Meridional Overturning Circulation (AMOC), OHC., and dynamic sea level (DSL), are all reasonably reproduced.