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首页> 外文期刊>Geophysical Research Letters >Fully Developed Superrotation Driven by the Mean Meridional Circulation in a Venus GCM
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Fully Developed Superrotation Driven by the Mean Meridional Circulation in a Venus GCM

机译:通过金星GCM的平均子午线流通驱动的完全开发的超级功能

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Fully developed superrotation is reproduced for the first time in very long term simulations with a dynamical Venus general circulation model (GCM) driven by a zonally averaged component of the realistic solar heating only. Starting from a motionless state with temperature distribution including a low static stability layer in the lower cloud layer, the fast superrotating zonal flow of similar to 100 m/s is established after 500 Earth years. In this experiment, the mean meridional circulation is responsible for generating the superrotation, because effects of thermal tides, topography, radiation process, and cloud physics are excluded in the present simulations. Sensitivity experiments indicate that the vertical eddy viscosity smaller than 0.02 m(2)/s is necessary for the fast superrotation to appear. The low static stability layer also strongly affects the superrotation with high-latitude jets through angular momentum transport by baroclinic/barotropic instability in the cloud layer.
机译:通过仅由现实太阳能加热的Zonally平均分量驱动的动态金星一般循环模型(GCM),首次在非常长期的模拟中首次转载完全开发的超级功能。 从带有温度分布的一系列动态状态,包括低云层中的低静态稳定层,在500欧元之后建立了类似于100米/秒的快速上叠层流出。 在该实验中,平均循环负责产生叠加循环,因为热潮汐,地形,辐射过程和云物理学的影响被排除在本模拟中。 敏感性实验表明,对于出现的快速叠加,是小于0.02μm(2)/ s的垂直涡流粘度。 低静态稳定性层也强烈影响通过在云层中的曲金/波高的不稳定性通过角度动量传输来利用高纬度射流的叠加。

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