首页> 中文期刊> 《大气科学进展:英文版》 >Water Vapor and Cloud Radiative Forcings over the Pacific Ocean Simulated by the LASG/IAP AGCM:Sensitivity to Convection Schemes

Water Vapor and Cloud Radiative Forcings over the Pacific Ocean Simulated by the LASG/IAP AGCM:Sensitivity to Convection Schemes

             

摘要

Characteristics of the total clear-sky greenhouse effect (GA) and cloud radiative forcings (CRFs), along with the radiative-related water vapor and cloud properties simulated by the Spectral Atmospheric Model developed by LASGIAP (SAMIL) are evaluated. Impacts of the convection scheme on the simulation of CRFs are discussed by using two AMIP (Atmospheric Model Inter-comparison Project) type simulations employing different convection schemes: the new Zhang-McFarlane (NZH) and Tiedtke (TDK) convection schemes. It shows that both the climatological GA and its response to El Nio warming are simulated well, both in terms of spatial pattern and magnitude. The impact of the convection scheme on GA is not significant. The climatological longwave CRF (LWCRF) and its response to El Nio warming are simulated well, but with a prominently weaker magnitude. The simulation of the climatology (response) of LWCRF in the NZH (TDK) run is slightly more realistic than in the TDK (NZH) simulation, indicating significant impacts of the convection scheme. The shortwave CRF (SWCRF) shows large biases in both spatial pattern and magnitude, and the results from the TDK run are better than those from the NZH run. A spuriously excessive negative climatological SWCRF over the southeastern Pacific and an insufficient response of SWCRF to El Nio warming over the tropical Pacific are seen in the NZH run. These two biases are alleviated in the TDK run, since it produces vigorous convection, which is related to the low threshold for convection to take place. Also, impacts of the convection scheme on the cloud profile are discussed.

著录项

  • 来源
    《大气科学进展:英文版》 |2011年第1期|80-98|共19页
  • 作者单位

    The State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics;

    Institute of Atmospheric Physics;

    Chinese Academy of Sciences;

    National Satellite Meteorological Center;

    China Meteorological Administration;

    Cooperative Institute for Environmental Studies/University of Colorado;

    Earth System Research Laboratory/NOAA;

    The State Key Laboratory of Numerical Modeling for Atmospheric Sciences andGeophysical Fluid Dynamics;

    Institute of Atmospheric Physics;

    Chinese Academy of Sciences;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 大气辐射;
  • 关键词

    云辐射强迫; 模式模拟; 东南太平洋; 对流; 大气环流; 水汽; 慢性肾功能衰竭; 敏感性;

    机译:云辐射强迫;模式模拟;东南太平洋;对流;大气环流;水汽;慢性肾功能衰竭;敏感性;
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