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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Effective diffusivity in the middle atmosphere based on general circulation model winds
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Effective diffusivity in the middle atmosphere based on general circulation model winds

机译:有效扩散系数在中间的气氛基于风环流模型

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The mixing of a passive tracer in the stratosphere and lower mesosphere is studied on the basis of the effective diffusivity, which is obtained in the framework of the tracer-based coordinate system. This characteristic is proportional to the average diffusion flux over Lagrangian contours and inversely proportional to the mean tracer gradient. The tracer distribution used in the calculation of the effective diffusivity is obtained after integration of the advection-diffusion equation using general circulation model winds and a new numerical advection scheme with small numerical diffusivity. Using some theoretical and experimental arguments, it is shown that the interpretation of the seasonal variability of the effective diffusivity field cannot be done on the basis of the momentary wind field alone, but some flow history should be taken into account. The climatology of the effective diffusivity for different months is presented up to the lower mesosphere and compared with previous studies. In the stratosphere some new features of the effective diffusivity distribution are obtained. For example, there is a local maximum of the effective diffusivity at midlatitudes of the Northern Hemisphere of the summer middle stratosphere. The effective diffusivity fields in the lower mesosphere show a strong increase of the mean effective diffusivity from the upper stratosphere to the lower mesosphere and the existence of a complex latitudinal structure of the effective diffusivity at mesospheric heights. In the lower mesosphere there is a marked interannual variability during the Southern Hemisphere easterly wind development. A possible explanation for the obtained structure is discussed on the basis of in situ Rossby wave generation and Rossby-wave-breaking effects.
机译:平流层的一个被动的示踪剂的混合和较低的基础上研究了中间层有效扩散系数,获得tracer-based坐标的框架系统。在拉格朗日平均扩散通量轮廓和成反比的意思示踪剂梯度。有效扩散系数的计算集成后获得的advection-diffusion方程使用一般循环风和一个新的数值模型平流方案小数值扩散系数。实验参数,表明解释的季节性变化有效扩散系数不能做的根据瞬时风场,但是一些历史应该考虑流动。气候学的有效扩散系数不同月份提出了降低中间层,与先前的研究相比。平流层的一些新特性有效扩散系数分布。例如,有一个本地最大的有效扩散系数在情理之中的北半球的夏天平流层。较低的中间层显示出强劲的增长上的平均有效扩散系数中间层和低平流层存在一个复杂的纬向的结构有效扩散系数在中间层山庄。在中间层有一个标志在南部的年际变化半球的东风发展。解释获得的结构讨论了原位罗斯贝波的基础上一代和Rossby-wave-breaking效果。

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