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AbstractAbstract
[en] There have been many numerical simulations of hydrodynamical problems in astrophysics, e.g. processes of star formation, supernova explosion and formation of neutron stars, and general relativistic collapse of star to form black hole. The codes are made to be suitable for computing such problems. In astrophysical hydrodynamical problems, there are the characteristics: problems of self-gravity or external gravity acting, objects of scales very large or very short, objects changing by short period or long time scale, problems of magnetic force and/or centrifugal force acting. In this paper, we present one of methods of numerical simulations which may satisfy these requirements, so-called smoothed particle methods. We then introduce the methods briefly. Then, we show one of the applications of the methods to astrophysical problem (fragmentation and collapse of rotating isothermal cloud). (Mori, K.)
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Nagoya Univ. (Japan). Inst. of Plasma Physics; 230 p; Mar 1985; p. 49-65; Workshop on 'simulation techniques for shock wave phenomena' and 'characteristics of plasmas in inertial confinement fusion'; Nagoya (Japan); 15-16 Nov 1984
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