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The origin of hydrodynamical instability and turbulence in the Keplerian accretion disk is a long-standing puzzle. The flow therein is linearly stable. Here we explore the evolution of perturbation in this flow in the presence of an…

高能天体物理现象 · 物理学 2021-11-18 Subham Ghosh , Banibrata Mukhopadhyay

We attempt to address the old problem of plane shear flows: the origin of turbulence and hence transport of angular momentum in accretion flows as well as laboratory flows, such as plane Couette flow. We undertake the problem by introducing…

高能天体物理现象 · 物理学 2021-01-21 Subham Ghosh , Banibrata Mukhopadhyay

Origin of hydrodynamic turbulence in rotating shear flow, e.g. plane Couette flow including the Coriolis force, is a big puzzle. While the flow often exhibits turbulence in laboratory experiments, according to the linear perturbation theory…

天体物理学 · 物理学 2016-08-30 Banibrata Mukhopadhyay

The origin of hydrodynamic turbulence, and in particular of an anomalously enhanced angular momentum transport, in accretion disks is still an unsolved problem. This is especially important for cold disk systems which are practically…

天体物理学 · 物理学 2008-11-26 Banibrata Mukhopadhyay

Origin of hydrodynamic turbulence in rotating shear flows is investigated. The particular emphasis is the flows whose angular velocity decreases but specific angular momentum increases with increasing radial coordinate. Such flows are…

高能天体物理现象 · 物理学 2013-02-19 Banibrata Mukhopadhyay , Amit K. Chattopadhyay

We employ a variety of numerical simulations in the local shearing box system to investigate in greater depth the local hydrodynamic stability of Keplerian differential rotation. In particular we explore the relationship of Keplerian shear…

天体物理学 · 物理学 2009-10-31 John F. Hawley , Steven A. Balbus , Wayne F. Winters

Origin of turbulence in cold accretion disks, particularly in 3D, which is expected to be hydrodynamic but not magnetohydrodynamic, is a big puzzle. While the flow must exhibit some turbulence in support of the transfer of mass inward and…

天体物理学 · 物理学 2016-11-15 Banibrata Mukhopadhyay

Turbulent viscosity in cold accretion disks is likely to be hydrodynamic in origin. We investigate the growth of hydrodynamic perturbations in a small region of a disk, which we model as a linear shear flow with Coriolis force, between two…

天体物理学 · 物理学 2007-05-23 Banibrata Mukhopadhyay , Niayesh Afshordi , Ramesh Narayan

Warped astrophysical discs are usually treated as laminar viscous flows, which have anomalous properties when the disc is nearly Keplerian and the viscosity is small: fast horizontal shearing motions and large torques are generated, which…

太阳与恒星天体物理 · 物理学 2015-06-15 Gordon I. Ogilvie , Henrik N. Latter

We provide the possible resolution for the century old problem of hydrodynamic shear flows, which are apparently stable in linear analysis but shown to be turbulent in astrophysically observed data and experiments. This mismatch is noticed…

高能天体物理现象 · 物理学 2016-10-26 Sujit Kumar Nath , Banibrata Mukhopadhyay

Rotating shear flows, when angular momentum increases and angular velocity decreases as functions of radiation coordinate, are hydrodynamically stable under linear perturbation. The Keplerian flow is an example of such systems which appears…

高能天体物理现象 · 物理学 2015-05-27 Banibrata Mukhopadhyay , Ranchu Mathew , Soumyendu Raha

The origin of hydrodynamic turbulence in rotating shear flow is a long standing puzzle. Resolving it is especially important in astrophysics when the flow angular momentum profile is Keplerian which forms an accretion disk having negligible…

高能天体物理现象 · 物理学 2015-05-27 Banibrata Mukhopadhyay , Kanak Saha

A viscous instability in shearing laminar axisymmetric hydrodynamic flows around a gravitating center is described. In the linearized hydrodynamic equations written in the Boussinesq approximation with microscopic molecular transport…

高能天体物理现象 · 物理学 2015-03-18 Nikolai Shakura , Konstantin Postnov

Aims. Qualitative analysis of key (but yet unappreciated) linear phenomena in stratified hydrodynamic Keplerian flows: (i) the occurrence of a vortex mode, as a consequence of strato-rotational balance, with its transient dynamics; (ii) the…

天体物理学 · 物理学 2009-11-13 A. G. Tevzadze , G. D. Chagelishvili , J. -P. Zahn

We investigate the stability, nonlinear development and equilibrium structure of vortices in a background shearing Keplerian flow. We make use of high-resolution global two-dimensional compressible hydrodynamic simulations. We introduce the…

天体物理学 · 物理学 2009-11-13 G. Bodo , A. Tevzadze , G. Chagelishvili , A. Mignone , P. Rossi , A. Ferrari

We discuss non-self-gravitating hydrodynamic disks in the thin disk limit. These systems are stable according to the Rayleigh criterion, and yet there is some evidence that the dissipative and transport processes in these disks are…

天体物理学 · 物理学 2007-05-23 Peter Todd Williams

Cold accretion disks such as those in star-forming systems, quiescent cataclysmic variables, and some active galactic nuclei, are expected to have neutral gas which does not couple well to magnetic fields. The turbulent viscosity in such…

天体物理学 · 物理学 2009-11-10 Banibrata Mukhopadhyay , Niayesh Afshordi , Ramesh Narayan

Hydrodynamic unstratified keplerian flows are known to be linearly stable at all Reynolds numbers, but may nevertheless become turbulent through nonlinear mechanisms. However, in the last ten years, conflicting points of view have appeared…

天体物理学 · 物理学 2009-11-11 G. Lesur , P-Y. Longaretti

This paper deals with the problem of hydrodynamic shear turbulence in non-magnetized Keplerian disks. We wish to draw attention to a route to hydrodynamic turbulence which seems to be little known by the astrophysical community, but which…

天体物理学 · 物理学 2009-11-07 G. D. Chagelishvili , J. -P. Zahn , A. G. Tevzadze , J. G. Lominadze

The non-linear hydrodynamic stability of thin, compressible, Keplerian disks is studied on the large two-dimensional compressible scale, using a high-order accuracy spectral method. We show that purely hydrodynamic perturbations, while…

天体物理学 · 物理学 2009-10-31 Patrick Godon , Mario Livio
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