I present results from numerical simulations of gas dynamics outside luminous accretion disks in active galactic nuclei. The gas, gravitationally captured by a super massive black hole, can be driven away by the energy and momentum of the radiation emitted during black hole accretion. Assuming axisymmetry, I study how the mass accretion and outflow rates, and the flow dynamics respond to changes in radiation heating relative to radiation pressure. I find that for a 10^8 MSUN black hole with the accretion luminosity of 0.6 of the Eddington luminosity the flow settles into a steady state and has two components: (1) an equatorial inflow and (2) a bipolar inflow/outflow with the outflow leaving the system along the disk rotational axis. The inf...
Numerical, two-dimensional, time-dependent hydrodynamical models of geometrically thick accretion di...
The goal of the series of studies in this thesis is to understand the black hole accretion process a...
We perform time-dependent, two-dimensional, hydrodynamical, numerical simulations to study the dynam...
Steady-state disk accretion on to a black hole is studied for high accretion rates, where the dynami...
We present the first results from two-dimensional simulations of radiatively efficient accretion of ...
We present the first results from two-dimensional simulations of radiatively efficient accretion of ...
Spherical and axisymmetric accretion onto black holes is discussed. Physical processes in various fa...
We have performed axisymmetric hydrodynamic simulations of an isolated L* elliptical galaxy includin...
We have performed axisymmetric hydrodynamic simulations of an isolated L* elliptical galaxy includin...
This paper, the second of a series on radiation-regulated accretion onto black holes (BHs) from gala...
Radiatively inefficient (or advection dominated) disks are discussed at an introductory level. Ion s...
We present numerical simulations of properties of a parsec-scale torus exposed to illumination by th...
The goal of the series of studies in this thesis is to understand the black hole accretion process a...
A new general relativistic radiation magnetohydrodynamical code KORAL is described, which employs th...
This thesis focuses on radiation-regulated gas accretion onto black holes (BHs) from galactic scales...
Numerical, two-dimensional, time-dependent hydrodynamical models of geometrically thick accretion di...
The goal of the series of studies in this thesis is to understand the black hole accretion process a...
We perform time-dependent, two-dimensional, hydrodynamical, numerical simulations to study the dynam...
Steady-state disk accretion on to a black hole is studied for high accretion rates, where the dynami...
We present the first results from two-dimensional simulations of radiatively efficient accretion of ...
We present the first results from two-dimensional simulations of radiatively efficient accretion of ...
Spherical and axisymmetric accretion onto black holes is discussed. Physical processes in various fa...
We have performed axisymmetric hydrodynamic simulations of an isolated L* elliptical galaxy includin...
We have performed axisymmetric hydrodynamic simulations of an isolated L* elliptical galaxy includin...
This paper, the second of a series on radiation-regulated accretion onto black holes (BHs) from gala...
Radiatively inefficient (or advection dominated) disks are discussed at an introductory level. Ion s...
We present numerical simulations of properties of a parsec-scale torus exposed to illumination by th...
The goal of the series of studies in this thesis is to understand the black hole accretion process a...
A new general relativistic radiation magnetohydrodynamical code KORAL is described, which employs th...
This thesis focuses on radiation-regulated gas accretion onto black holes (BHs) from galactic scales...
Numerical, two-dimensional, time-dependent hydrodynamical models of geometrically thick accretion di...
The goal of the series of studies in this thesis is to understand the black hole accretion process a...
We perform time-dependent, two-dimensional, hydrodynamical, numerical simulations to study the dynam...