The Climatology and the Midwinter Suppression of the Cold Season North Pacific Storm Track in CMIP6 Models

Author:

Yang Minghao1,Li Chongyin12,Chen Xiong1,Tan Yanke3,Li Xin1,Zhang Chao1,Chen Guiwan2

Affiliation:

1. 1 College of Meteorology and Oceanography, National University of Defense Technology, Nanjing 211101, China

2. 2 State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China

3. 3 Department of Atmospheric and Oceanic Sciences, Institute of Atmospheric Sciences, Fudan University, Shanghai 200433, China

Abstract

AbstractThe reproducibility of climatology and the midwinter suppression of cold season North Pacific storm track (NPST) in historical runs of 18 CMIP6 models is evaluated against the NCEP reanalysis data. The results show that the position of the climatological peak area of 850 hPa meridional eddy heat flux (vt850) is well captured by these models. The spatial patterns of climatological vt850 are basically consistent with the NCEP reanalysis. Generally, NorESM2-LM and CESM2-WACCM present a relatively strong capability to reproduce the climatological amplitude of vt850 with lower RMSE than the other models. Compared with CMIP5 models, the inter-model spread of vt850 climatology among the CMIP6 models is smaller, and their multi-model ensemble is closer to the NCEP reanalysis. The geographical distribution in more than half of the selected models is further south and east. For the subseasonal variability of vt850, nearly half of the models exhibit a double-peak structure. In contrast, the apparent midwinter suppression in the NPST represented by the 250 hPa filtered meridional wind variance (vv250) is reproduced by all the selected models.In addition, the present study investigates the possible reasons for simulation biases regarding climatological NPST amplitude. It is found that a higher model horizontal resolution significantly intensifies the climatological vv250. There is a significant in-phase relationship between climatological vt250 and the intensity of the East Asian winter monsoon (EAWM). However, the climatological vt850 is not sensitive to the model grid spacing. Additionally, the climatological low-tropospheric atmospheric baroclinicity is uncorrelated with climatological vv250. The stronger climatological baroclinic energy conversion is associated with the stronger climatological vt850.

Publisher

American Meteorological Society

Subject

Atmospheric Science

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