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Computational relativistic astrophysics using the flow field-dependent variation theory

机译:基于流场的变异理论的计算相对论天体物理学

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We present our method for solving general relativistic nonideal hydrodynamics. Relativistic effects become pronounced in such cases as jet formation from black hole magnetized accretion disks which may lead to the study of gamma-ray bursts. Nonideal flows are present where radiation, magnetic forces, viscosities, and turbulence play an important role. Our concern in this paper is to reexamine existing numerical simulation tools as to the accuracy and efficiency of computations and introduce a new approach known as the flow field dependent variation ( FDV) method. The main feature of the FDV method consists of accommodating discontinuities of shock waves and high gradients of flow variables such as occur in turbulence and unstable motions. In this paper, the physics involved in the solution of relativistic hydrodynamics and solution strategies of the FDV theory are elaborated. The general relativistic astrophysical flow and shock solver (GRAFSS) is introduced, and some simple example problems for computational relativistic astrophysics (CRA) are demonstrated. [References: 22]
机译:我们提出了解决广义相对论非理想流体动力学的方法。在诸如黑洞磁化吸积盘形成射流的情况下,相对论效应变得明显,这可能导致对伽马射线爆发的研究。在辐射,磁力,粘度和湍流起重要作用的地方存在非理想流动。我们在本文中关注的是重新检查现有的数值模拟工具,以提高计算的准确性和效率,并引入一种称为流场相关变化(FDV)方法的新方法。 FDV方法的主要特征包括适应冲击波的不连续性和流动变量的高梯度,例如发生在湍流和不稳定运动中。本文阐述了相对论流体力学求解中涉及的物理学和FDV理论的求解策略。介绍了广义相对论天体流动与冲击求解器(GRAFSS),并论证了计算相对论天体物理学(CRA)的一些简单示例问题。 [参考:22]

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