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Fully compressible simulations of the baroclinic instability in protoplanetary disks

机译:原始行星盘中斜压不稳定的完全可压缩模拟

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The occurrence of the baroclinic instability in protoplanetary disks is investigated using fully compressible numerical simulations. We study the role of disk stratification and heat transfer in the development of the instability. Vortices are found to form whatever the importance of the stratification but to grow and persist only when the disk is not stably stratified. In the presence of thermal diffusion the baroclinic instability leads to hollow vortices that decays into transient vortical structures.
机译:利用完全可压缩的数值模拟研究了原行星盘中斜压不稳定性的发生。我们研究了磁盘分层和传热在不稳定发展中的作用。发现涡流会形成分层的重要性,但仅在磁盘未稳定分层时才会增长并持续存在。在存在热扩散的情况下,斜压不稳定会导致空心涡旋衰减为瞬态涡旋结构。

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