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首页> 外文期刊>The Astrophysical journal >BUILDING A COSMOLOGICAL HYDRODYNAMIC CODE: CONSISTENCY CONDITION, MOVING MESH GRAVITY, AND SLH-P~3M
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BUILDING A COSMOLOGICAL HYDRODYNAMIC CODE: CONSISTENCY CONDITION, MOVING MESH GRAVITY, AND SLH-P~3M

机译:建立化妆品水动力学代码:一致性条件,运动网格重力和SLH-P〜3M

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摘要

Building a self-gravitating hydrodynamic code as a combination of a hydrodynamic solver and a gravity solver is discussed. We show that straightforward combining of those two solvers generally leads to a code that does not conserve energy locally, and instead a special gravitational consistency condition ought to be satisfied. A particular example of combining softened Lagrangian hydrodynamics (SLH) with a P~3M gravity solver is used to demonstrate the effect of the gravitational consistency condition for a self-gravitating hydrodynamic code. The need to supplement the SLH method with the P~3M gravity solver arose because the moving mesh gravity solver, used in conjunction with the SLH method previously, was found to produce inaccurate results. We also show that most existing cosmological hydro-dynamic codes implicitly satisfy the gravitational consistency condition.
机译:讨论了构建自重力流体力学代码作为流体动力学求解器和重力求解器的组合的问题。我们表明,这两个求解器的直接组合通常会导致代码不局部节省能量,而应满足特殊的重力一致性条件。结合软化拉格朗日流体力学(SLH)和P〜3M重力求解器的一个特定示例,来论证重力一致性条件对自重力流体力学代码的影响。需要使用P〜3M重力解算器补充SLH方法的原因是,以前发现与SLH方法结合使用的移动网格重力解算器产生的结果不准确。我们还表明,大多数现有的宇​​宙流体力学代码都隐含地满足引力一致性条件。

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