2.5-dimensional solution of the advective accretion disk: A self-similar approach

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Abstract

We provide a 2.5-dimensional solution to a complete set of viscous hydrodynamical equations describing accretion-induced outflows and plausible jets around black holes/compact objects. We prescribe a self-consistent advective disk-outflow coupling model, which explicitly includes the information of vertical flux. Inter-connecting dynamics of an inflow-outflow system essentially upholds the conservation laws. We provide a set of analytical family of solutions through a self-similar approach. The flow parameters of the disk-outflow system depend strongly on the viscosity parameter α and the cooling factor f. © 2009 National Astronomical Observatories of Chinese Academy of Sciences and IOP Publishing Ltd..

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Ghosh, S., & Mukhopadhyay, B. (2009). 2.5-dimensional solution of the advective accretion disk: A self-similar approach. Research in Astronomy and Astrophysics, 9(2), 157–167. https://doi.org/10.1088/1674-4527/9/2/005

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