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Middle atmosphere simulated with high vertical and horizontal resolution versions of a GCM: Improvements in the cold pole bias and generation of a QBO-like oscillation in the tropics

机译:使用GCM的高垂直和水平分辨率版本模拟中层大气:改善热带地区的冷极偏置和产生类似QBO的振荡

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The large-scale circulation in the Geophysical Fluid Dynamics Laboratory `SKYHI' troposphere-stratosphere-mesosphere finite-difference general circulation model is examined as a function of vertical and horizontal resolution. The experiments examined include one with horizontal grid spacing of approximately 35 km and another with approximately 100 km horizontal grid spacing but very high vertical resolution (160 levels between the ground and about 85 km). The simulation of the middle-atmospheric zonal-mean winds and temperatures in the extratropics is found to be very sensitive to horizontal resolution. For example, in the early Southern Hemisphere winter the South Pole near 1 mb in the model is colder than observed, but the bias is reduced with improved horizontal resolution (from approximately 70 °C in a version with approximately 300 km grid spacing to less than 10 °C in the approximately 35 km version). The extratropical simulation is found to be only slightly affected by enhancements of the vertical resolution. By contrast, the tropical middle-atmospheric simulation is extremely dependent on the vertical resolution employed. With level spacing in the lower stratosphere approximately 1.5 km, the lower stratospheric zonal-mean zonal winds in the equatorial region are nearly constant in time. When the vertical resolution is doubled, the simulated stratospheric zonal winds exhibit a strong equatorially centered oscillation with downward propagation of the wind reversals and with formation of strong vertical shear layers. This appears to be a spontaneous internally generated oscillation and closely resembles the observed QBO in many respects, although the simulated oscillation has a period less than half that of the real QBO.
机译:地球物理流体动力学实验室“ SKYHI”对流层-平流层-中层层有限差分通用环流模型中的大规模环流是作为垂直和水平分辨率的函数进行检查的。检查的实验包括一个水平网格间距约为35 km的实验,另一个水平网格间距约为100 km但垂直分辨率非常高(在地面和约85 km之间为160层)的实验。发现对温带中层大气平均纬向风和温度的模拟对水平分辨率非常敏感。例如,在南半球早期的冬季,模型中接近1 mb的南极比观测到的要冷,但是随着水平分辨率的提高,偏差减小了(从网格间距约300 km的版本中约70°C减小到小于在大约35 km的版本中为10°C)。发现温带模拟仅受垂直分辨率增强的轻微影响。相比之下,热带中层大气模拟非常依赖于所采用的垂直分辨率。由于平流层下部的层距大约为1.5 km,赤道区的平流层下部纬向平均纬向风在时间上几乎是恒定的。当垂直分辨率增加一倍时,模拟的平流层纬向风表现出强烈的赤道中心振荡,同时逆风向下传播并形成强垂直切变层。尽管模拟的振荡周期小于实际QBO周期的一半,但这似乎是自发的内部振荡,并且在许多方面都非常类似于观测到的QBO。

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