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陈昊明, 周天军, 宇如聪, 等. 耦合模式FGOALS_s模拟的东亚夏季风[J]. 大气科学, 2009, 33(1): 155-167. DOI: 10.3878/j.issn.1006-9895.2009.01.14
引用本文: 陈昊明, 周天军, 宇如聪, 等. 耦合模式FGOALS_s模拟的东亚夏季风[J]. 大气科学, 2009, 33(1): 155-167. DOI: 10.3878/j.issn.1006-9895.2009.01.14
CHEN Haoming, ZHOU Tianjun, YU Rucong, et al. The East Asian Summer Monsoon Simulated by Coupled Model FGOALS_s[J]. Chinese Journal of Atmospheric Sciences, 2009, 33(1): 155-167. DOI: 10.3878/j.issn.1006-9895.2009.01.14
Citation: CHEN Haoming, ZHOU Tianjun, YU Rucong, et al. The East Asian Summer Monsoon Simulated by Coupled Model FGOALS_s[J]. Chinese Journal of Atmospheric Sciences, 2009, 33(1): 155-167. DOI: 10.3878/j.issn.1006-9895.2009.01.14

耦合模式FGOALS_s模拟的东亚夏季风

The East Asian Summer Monsoon Simulated by Coupled Model FGOALS_s

  • 摘要: 本文评估了中国科学院大气物理研究所大气科学和地球流体力学数值模拟国家重点实验室的海气耦合模式FGOALS_s对东亚夏季风的模拟能力, 并通过与观测海温强迫下单独大气模式SAMIL试验结果的比较, 分析了海气耦合过程对模式性能的影响。结果表明, FGOALS_s基本能够模拟出东亚夏季风系统的气候态分布及其演变过程, 但也存在明显偏差, 主要表现为模拟的温度场在对流层中上层一致性偏冷, 导致模式中环流系统强度偏弱; 而温度经向梯度模拟的不足, 直接影响到东亚副热带西风急流的模拟。通过与观测海温强迫下SAMIL模拟结果的对比发现, SAMIL模拟的温度场、 环流场以及风场较之耦合模式结果更接近观测, 但也存在与FGOALS_s类似的模式偏差。因此, 大气模式固有的偏差对耦合模式的模拟偏差有重要影响。分析发现, 对于西太平洋降水的模拟而言, 耦合模式结果更加合理, 表明海气相互作用过程对模式性能有重要影响。本文的结果表明, 大气模式自身的误差是导致耦合模式误差的主要原因。通过更新云-辐射模块改进大气模式模拟的温度场, 应是FGOALS_s后续发展的首要工作。

     

    Abstract: This paper evaluates the simulations of East Asian Summer Monsoon (EASM) for the new version of climate system model, namely FGOALS_s, developed at the State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics, Institute of Atmospheric Physics (LASG/IAP), which employs the recently improved version of LASG/IAP spectral AGCM SAMIL as its atmospheric component. To understand the impacts of air-sea coupling, the results of coupled system are then compared to AMIP-type SST-forced simulations with SAMIL. FGOALS_s is shown to capture the main climate mean states and seasonal features of EASM, though the bias is obvious. The main deficiency of the FGOALS_s model is that the simulated temperature is systematically colder than the observation in the middle and upper troposphere, which notably weaken the atmosphere circulations and winds. In addition, the insufficiency of meridional air temperature gradient directly influences the simulation of subtropic westerly jet. The comparison between FGOALS and SAMIL demonstrates that there are similar biases in the stand-alone AGCM, though the simulation of SAMIL is more realistic. This indicates that the biases included by the atmosphere model have great influence on the coupling system performance. Besides, the spatial pattern of EASM precipitation is more reasonable in the coupled model, which illuminates that air-sea interaction can improve the simulation of precipitation in EASM while amplify the biases in the temperature field. Therefore air-sea coupling also plays a vital role in the performance of the climate system model. The results suggest that the biases in the atmosphere are the key reasons for the insufficiency of coupled system. From this point, updating cloud and radiation processes to improve the simulation of temperature in the atmosphere model, may be the first step for the future development of FGOALS_s.

     

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