Physics
Scientific paper
May 2001
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2001aas...198.6513d&link_type=abstract
American Astronomical Society, 198th AAS Meeting, #65.13; Bulletin of the American Astronomical Society, Vol. 33, p.886
Physics
2
Scientific paper
We introduce Djehuty, the world's only operating hydrodynamic code capable of modeling complete stars in three dimensions. Djehuty includes a full physics package using the best available physical data relevant to stellar interior modeling including the Eggleton EOS, Opal and Alexander opacities, radiative and convective energy transport, and thermonuclear energy generation with a full reaction network. To date we have successfully run Djehuty on a 42 million zone mesh with 440 processors, enabling us to witness the onset of convection in the core of a 4 Msun main sequence star. The code, which uses an Arbitrary Langrangian-Eularian mesh algorithm, was shown to be stable, self-consistent and fully hydrodynamic. We anticipate longer and larger science runs by June, 2001. With Djehuty, we will be able for the first time to model accurately a host of astrophysically important problems in stellar evolution (e.g., convective cores and envelopes, nonconvective mixing, rotation, binary evolution, mass transfer, etc.) over a wide range of stellar masses from brown dwarfs to over 50 Msun at any point along the HR diagram. Funding for the Djehuty project is provided by the Department of Energy through the University of California.
Bazan Grant
Castor John
Cavallo Rob
Cohl H.
Cook Kelly
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