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Astrophysical smooth particle hydrodynamics

期刊

NEW ASTRONOMY REVIEWS
卷 53, 期 4-6, 页码 78-104

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.newar.2009.08.007

关键词

Hydrodynamics; Variational principles; Conservation; Shocks; Relativity

资金

  1. DFG [RO 3399/5-1]

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The paper presents a detailed review of the smooth particle hydrodynamics (SPH) method with particular focus on its astrophysical applications. We start by introducing the basic ideas and concepts and thereby outline all ingredients that are necessary for a practical implementation of the method in a working SPH code. Much of SPH's success relies on its excellent conservation properties and therefore the numerical conservation of physical invariants receives much attention throughout this review. The self-consistent derivation of the SPH equations from the Lagrangian of an ideal fluid is the common theme of the remainder of the text. We derive a modern, Newtonian SPH formulation from the Lagrangian of an ideal fluid. It accounts for changes of the local resolution lengths which result in corrective, so-called grad-h-terms. We extend this strategy to special relativity for which we derive the corresponding grad-h equation set. The variational approach is further applied to a general-relativistic fluid evolving in a fixed, curved background space-time. Particular care is taken to explicitly derive all relevant equations in a coherent way. (C) 2009 Elsevier B.V. All rights reserved.

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