首页> 外文期刊>The Astrophysical Journal. Supplement Series >Relativistic hydrodynamic flows using spatial and temporal adaptive structured mesh refinement
【24h】

Relativistic hydrodynamic flows using spatial and temporal adaptive structured mesh refinement

机译:使用空间和时间自适应结构化网格细化的相对论流体动力流

获取原文
获取原文并翻译 | 示例
       

摘要

Astrophysical relativistic flow problems require high-resolution three-dimensional (3D) numerical simulations. In this paper, we describe a new parallel 3D code for simulations of special relativistic hydrodynamics (SRHD) using both spatially and temporally structured adaptive mesh refinement (AMR). We used the method of lines to discretize the SRHD equations spatially and a total variation diminishing (TVD) Runge-Kutta scheme for time integration. For spatial reconstruction, we have implemented piecewise linear method (PLM), piecewise parabolic method (PPM), third-order convex essentially nonoscillatory (CENO) and third- and fifth-order weighted essentially nonoscillatory (WENO) schemes. Flux is computed using either direct flux reconstruction or approximate Riemann solvers including HLL, modified Marquina flux, local Lax-Friedrichs flux formulas, and HLLC. The AMR part of the code is built on top of the cosmological Eulerian AMR code enzo. We discuss the coupling of the AMR framework with the relativistic solvers. Via various test problems, we emphasize the importance of resolution studies in relativistic flow simulations because extremely high resolution is required especially when shear flows are present in the problem. We also present the results of two 3D simulations of astrophysical jets: AGN jets and GRB jets. Resolution study of those two cases further highlights the need of high resolutions to calculate accurately relativistic flow problems.
机译:天体物理相对论流动问题需要高分辨率的三维(3D)数值模拟。在本文中,我们描述了一种新的并行3D代码,用于同时使用空间和时间结构化自适应网格细化(AMR)来模拟特殊相对论流体动力学(SRHD)。我们使用线法在空间上离散化SRHD方程,并使用总变化量递减(TVD)Runge-Kutta方案进行时间积分。对于空间重建,我们实现了分段线性方法(PLM),分段抛物线方法(PPM),三阶凸基本非振荡(CENO)以及三阶和五阶加权基本非振荡(WENO)方案。使用直接通量重构或近似Riemann求解器(包括HLL,修正的Marquina通量,局部Lax-Friedrichs通量公式和HLLC)来计算通量。该代码的AMR部分建立在宇宙欧拉AMR代码enzo之上。我们讨论了AMR框架与相对论求解器的耦合。通过各种测试问题,我们强调了分辨率研究在相对论流模拟中的重要性,因为需要极高的分辨率,尤其是当问题中存在剪切流时。我们还介绍了天体物理射流的两个3D模拟结果:AGN射流和GRB射流。对这两种情况的分辨率研究进一步强调了需要高分辨率来准确计算相对论流动问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号