论文标题
使用多重方法的数值相对论中的轴对称流体动力学
Axisymmetric Hydrodynamics in Numerical Relativity Using a Multipatch Method
论文作者
论文摘要
我们描述了一种通过修改多捕捉网格方案来实现一般流体动力学和磁流失动力学的轴对称演变的方法。为了缓解涉及数值相对性二进制紧凑型物体的系统的合并后阶段所需的计算要求,利用这些系统迅速迅速安顿到几乎是轴对称的状态的状态,允许允许世俗时间尺度的2D进化,这通常是有益的。我们在频谱爱因斯坦代码中实施了此方案,并显示了该方法应用于四个测试系统的结果,包括粘度,磁场和中微子辐射传输。我们的结果表明,该方法可用于快速允许现有的3D基础架构,该基础结构利用局部坐标系统转换以轴对称2D运行,并具有多绘图方法的灵活网格创建能力。我们的代码测试包括二进制中子星后遗迹的简单模型,为此,我们确认形成了巨大的圆环,这是合并后喷射的有前途的来源。
We describe a method of implementing the axisymmetric evolution of general-relativistic hydrodynamics and magnetohydrodynamics through modification of a multipatch grid scheme. In order to ease the computational requirements required to evolve the post-merger phase of systems involving binary compact massive objects in numerical relativity, it is often beneficial to take advantage of these system's tendency to rapidly settle into states that are nearly axisymmetric, allowing for 2D evolution of secular timescales. We implement this scheme in the spectral Einstein code and show the results of application of this method to four test systems including viscosity, magnetic fields, and neutrino radiation transport. Our results show that this method can be used to quickly allow already existing 3D infrastructure that makes use of local coordinate system transformations to be made to run in axisymmetric 2D with the flexible grid creation capabilities of multipatch methods. Our code tests include a simple model of a binary neutron star postmerger remnant, for which we confirm the formation of a massive torus which is a promising source of post-merger ejecta.