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BCC-CSM2-HR: a high-resolution version of the Beijing Climate Center Climate System Model

机译:BCC-CSM2-HR:北京气候中心气候系统模型的高分辨率版本

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摘要

BCC-CSM2-HR is a high-resolution version of the Beijing Climate Center (BCC) Climate System Model (T266 in the atmosphere and 1 / 4 ° latitude? × ? 1 / 4 ° longitude in the ocean). Its development is on the basis of the medium-resolution version BCC-CSM2-MR (T106 in the atmosphere and 1 ° latitude? × ?1 ° longitude in the ocean) which is the baseline for BCC participation in the Coupled Model Intercomparison Project Phase 6 (CMIP6). This study documents the high-resolution model, highlights major improvements in the representation of atmospheric dynamical core and physical processes. BCC-CSM2-HR is evaluated for historical climate simulations from 1950 to 2014, performed under CMIP6-prescribed historical forcing, in comparison with its previous medium-resolution version BCC-CSM2-MR. Observed global warming trends of surface air temperature from 1950 to 2014 are well captured by both BCC-CSM2-MR and BCC-CSM2-HR. Present-day basic atmospheric mean states during the period from 1995 to 2014 are then evaluated at global scale, followed by an assessment on climate variabilities in the tropics including the tropical cyclones (TCs), the El Ni?o–Southern Oscillation?(ENSO), the Madden–Julian Oscillation?(MJO), and the quasi-biennial oscillation (QBO) in the stratosphere. It is shown that BCC-CSM2-HR represents the global energy balance well and can realistically reproduce the main patterns of atmospheric temperature and wind, precipitation, land surface air temperature, and sea surface temperature (SST). It also improves the spatial patterns of sea ice and associated seasonal variations in both hemispheres. The bias of the double intertropical convergence zone (ITCZ), obvious in BCC-CSM2-MR, almost disappears in BCC-CSM2-HR. TC activity in the tropics is increased with resolution enhanced. The cycle of ENSO, the eastward propagative feature and convection intensity of MJO, and the downward propagation of QBO in BCC-CSM2-HR are all in a better agreement with observations than their counterparts in BCC-CSM2-MR. Some imperfections are, however, noted in BCC-CSM2-HR, such as the excessive cloudiness in the eastern basin of the tropical Pacific with cold SST biases and the insufficient number of tropical cyclones in the North Atlantic.
机译:BCC-CSM2-HR是北京气候中心(BCC)气候系统模型的高分辨率版本(大气中的T266和1/4°纬度?×1/4°在海洋中经度)。其开发是在中分辨率版本BCC-CSM2-MR(大气中T106和1°纬度?×1°在海洋中)的基础上,这是BCC参与耦合型号的基线的基准6(CMIP6)。本研究记录了高分辨率模型,突出了大气动态核心和物理过程的代表性的重大改进。与其先前的中分辨率版本BCC-CSM2-MR相比,评估了1950年至2014年的历史气候模拟的历史气候模拟评估了BCC-CSM2-HR。观察到1950年至2014年的地表空气温度的全球变暖趋势是通过BCC-CSM2-MR和BCC-CSM2-HR捕获的。在1995年至2014年期间的当今基本的大气平均国家在全球范围内进行评估,其次是对热带气旋(TCS),El Ni的热带气旋(TCS)的热带气候变量评估?(ENSO ),Madden-Julian振荡?(MJO)和平流层中的准双年振荡(QBO)。结果表明,BCC-CSM2-HR代表了全球能量平衡良好,可以实际地再现大气温度和风力,沉淀,陆地表面空气温度和海表面温度(SST)的主要模式。它还改善了海冰的空间模式以及两个半球的相关季节变化。双闭闭区域(ITCZ)的偏差,在BCC-CSM2-MR中显而易见,在BCC-CSM2-HR中几乎消失。热带地区的TC活动随着增强的分辨率而增加。 ENSO的周期,MJO的东方繁殖特征和对流强度,BCO在BCC-CSM2-HR中的QBO向下繁殖与观察结果更好,而不是BCC-CSM2-MR中的对应物。然而,在BCC-CSM2-HR中指出的一些缺陷,例如热带太平洋东部盆地的过度浑浊,具有冷SST偏见和北大西洋的热带气旋数量不足。

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