Published 1984 | Version v1
Report

Numerical study of nonspherical black hole accretion

Description

This thesis describes in detail a two-dimensional, axisymmetric computer code for calculating fully relativistic ideal gas hydrodynamics around a Kerr black hole. The aim is to study fully dynamic inviscid fluid accretion onto black holes, as well as to study the evolution and development of nonlinear instabilities in pressure supported accretion disks. In order to fully calibrate and document the code, certain analytic solutions for shock tubes and special accretion flows are derived; these solutions form the basis for code testing. The numerical techniques used are developed and discussed. A variety of alternate differencing schemes are compared on an analytic test bed. Some discussion is devoted to general issues in finite differencing. The working code is calibrated using analytically solvable accretion problems, including the radial accretion of dust and of fluid with pressure (Bondi accretion). Two dimensional test problems include the spiraling infall of low angular momentum fluid, the formation of a pressure supported torus, and the stable evolution of a torus. A series of numerical models are discussed and illustrated with selected plots

Availability note (English)

University Microfilms Order No. 85-02,167.

Additional details

Publishing Information

Imprint Pagination
277 p.

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
17014704
Subject category
S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
Resource subtype / Literary indicator
Thesis, Non-conventional Literature
Descriptors DEI
ACCRETION DISKS; BLACK HOLES; COMPUTER CODES; HYDRODYNAMICS; TWO-DIMENSIONAL CALCULATIONS
Descriptors DEC
FLUID MECHANICS; MECHANICS