arXiv · astro-ph/0510305
Hydraulic/Shock-Jumps in Protoplanetary Disks
Abstract
In this paper, we describe the nonlinear outcome of spiral shocks in protoplanetary disks. Spiral shocks, for most protoplanetary disk conditions, create a loss of vertical force balance in the post-shock region and result in rapid expansion of the gas perpendicular to the disk midplane. This expansion has characteristics similar to hydraulic jumps, which occur in incompressible fluids. We present a theory to describe the behavior of these hybrids between shocks and hydraulic jumps (shock bores) and then compare the theory to three-dimensional hydrodynamics simulations. We discuss the fully three-dimensional shock structures that shock bores produce and discuss possible consequences for disk mixing, turbulence, and evolution of solids.
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A. C. Boley, R. H. Durisen. 2006-03-10. Hydraulic/Shock-Jumps in Protoplanetary Disks. https://doi.org/10.1086/500396
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