Search NASA⌕ Search

NASA NTRS · 19910048954

Accretion in wind-driven X-ray sources

Abstract

The hydrodynamics of axisymmetric accretion flow in stellar wind-fed X-ray sources is investigated, including momentum deposition by radiation, as well as radiative heating and cooling by Compton and bremsstrahlung processes. The results of two-dimensional numerical simulations for mass accretion rates ranging from 0.02 to 0.4 of the Eddington value reveal a variety of behaviors. At low rates radiative effects are unimportant, and the accretion flow is nearly adiabatic. In this case the flow is steady. For intermediate accretion rates, radiative heating and cooling effects become important. The flow remains steady, but the accretion rate is significantly reduced from the Hoyle-Lyttleton estimate. At the highest mass accretion rates, radiative momentum transfer and energy exchange are important and lead to nonsteady behavior. For the parameters relevant to massive X-ray binary systems accreting at high rates, the results reveal that the accretion flows can be complex and time dependent.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Taam, Ronald E., Fu, Albert, Fryxell, B. A.. 1991-04-20. Accretion in wind-driven X-ray sources. https://ntrs.nasa.gov/citations/19910048954

Cite the original work for its findings. Save a collection to share your selection of sources.