NASA NTRS · 19920001673
Fragmentation in stellar collapse
Abstract
A three dimensional Cartesian code was developed to model molecular cloud collapse and protostellar formation. The basic Eulerian scheme employs spatially second-order accurate, finite difference methods to advance the fluid variables in time. The hydrodynamic equations governing the collapse include the effects of self-gravity, rotation, and radiative transfer. Supplementary equations include Poisson's equation which relates the gravitational potential to the density distribution and a mean intensity equation derived with the Eddington approximation for radiative transfer. The gas pressures and internal energies are determined from equations of state derived for a molecular cloud composed of hydrogen, helium, and heavier elements.
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Myhill, E. M., Kaula, W. M.. 1991-06-01. Fragmentation in stellar collapse. https://ntrs.nasa.gov/citations/19920001673
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