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首页> 外文期刊>The Astrophysical journal >MAGNETOHYDRODYNAMIC EVOLUTION OF H Ⅱ REGIONS IN MOLECULAR CLOUDS: SIMULATION METHODOLOGY, TESTS, AND UNIFORM MEDIA
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MAGNETOHYDRODYNAMIC EVOLUTION OF H Ⅱ REGIONS IN MOLECULAR CLOUDS: SIMULATION METHODOLOGY, TESTS, AND UNIFORM MEDIA

机译:分子团中HⅡ区的磁氢动力演化:模拟方法,测试和均匀介质

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摘要

We present a method for simulating the evolution of H Ⅱ regions driven by point sources of ionizing radiation in mag-netohydrodynamic media, implemented in the three-dimensional Athena MHD code. We compare simulations using our algorithm to analytic solutions and show that the method passes rigorous tests of accuracy and convergence. The tests reveal several conditions that an ionizing radiation hydrodynamic code must satisfy to reproduce analytic solutions. As a demonstration of our new method, we present the first three-dimensional, global simulation of an H Ⅱ region expanding into a magnetized gas. The simulation shows that magnetic fields suppress sweeping up of gas perpendicular to magnetic field lines, leading to small density contrasts and extremely weak shocks at the leading edge of the H Ⅱ region's expanding shell.
机译:我们提出了一种在磁流体动力介质中模拟电离辐射的点源驱动的HⅡ区演化的方法,该方法在三维Athena MHD代码中实现。我们将使用我们的算法的仿真与解析解决方案进行了比较,结果表明该方法通过了准确性和收敛性的严格测试。这些测试揭示了电离辐射流体动力学法则必须满足的几个条件才能重现解析解。为了演示我们的新方法,我们对HⅡ区域扩展为磁化气体进行了第一个三维整体模拟。模拟表明,磁场抑制了垂直于磁场线的气体扫掠,从而导致HⅡ区膨胀壳的前缘处的密度对比较小,并且冲击极弱。

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