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Constrained transport and adaptive mesh refinement in the Black Hole Accretion Code

机译:黑洞累积代码中的约束传输和自适应网格细化

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Context . Worldwide very long baseline radio interferometry (VLBI) arrays are expected to obtain horizon-scale images of supermassive black hole candidates and of relativistic jets in several nearby active galactic nuclei. This, together with the expected detection of electromagnetic counterparts of gravitational-wave signals, motivates the development of models for magnetohydrodynamic flows in strong gravitational fields. Aims . The Black Hole Accretion Code ( BHAC ) is a publicliy available code intended to aid with the modeling of such sources by performing general relativistic magnetohydrodynamical simulations in arbitrary stationary spacetimes. New additions to the code are required in order to guarantee an accurate evolution of the magnetic field when small and large scales are captured simultaneously. Methods . We discuss the adaptive mesh refinement (AMR) techniques employed in BHAC , which are essential to keep several problems computationally tractable, as well as staggered-mesh-based constrained transport (CT) algorithms to preserve the divergence-free constraint of the magnetic field. We also present a general class of prolongation operators for face-allocated variables compatible with them. Results . After presenting several standard tests for the new implementation, we show that the choice of the divergence-control method can produce qualitative differences in the simulation results for scientifically relevant accretion problems. We demonstrate the ability of AMR to decrease the computational costs of black hole accretion simulations while sufficiently resolving turbulence arising from the magnetorotational instability. In particular, we describe a simulation of an accreting Kerr black hole in Cartesian coordinates using AMR to follow the propagation of a relativistic jet while self-consistently including the jet engine, a problem set up for which the new AMR implementation is particularly advantageous. Conclusions . The CT methods and AMR strategies discussed here are currently being used in the simulations performed with BHAC for the generation of theoretical models for the Event Horizon Telescope collaboration.
机译:语境。预计在世界范围内,非常长的基线无线电干涉仪(VLBI)阵列将获得超质量黑洞候选者和附近几个活跃银河核中相对论射流的水平尺度图像。这与对重力波信号的电磁对应物的预期检测一起,促使了在强重力场中磁流体动力流模型的发展。目的。黑洞增生代码(BHAC)是可公开获得的代码,旨在通过在任意静止时空中进行一般的相对论磁流体动力学模拟来辅助此类源的建模。为了保证当同时捕获小尺度和大尺度时磁场的精确演化,需要对代码进行新的添加。方法 。我们讨论了BHAC中使用的自适应网格细化(AMR)技术,这对于保持一些易于计算的问题至关重要,还讨论了基于交错网格的约束传输(CT)算法以保留磁场的无散度约束。我们还为与它们兼容的人脸分配变量提供了一般的延长运算符。结果。在为新的实现提出了几种标准测试之后,我们表明,对于科学相关的增生问题,发散控制方法的选择会在模拟结果中产生质的差异。我们证明了AMR能够降低黑洞积积模拟的计算成本,同时又能充分解决由磁旋转不稳定性引起的湍流的能力。特别是,我们描述了使用AMR跟随相对论射流的传播,同时自洽地包括射流引擎的方法,在笛卡尔坐标系中模拟了积淀的Kerr黑洞,这一问题对于新的AMR实现特别有利。结论。此处讨论的CT方法和AMR策略目前正在用BHAC进行的仿真中使用,以生成事件地平线望远镜协作的理论模型。

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