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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >An MHD simulation model of time-dependent global solar corona with temporally varying solar-surface magnetic field maps
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An MHD simulation model of time-dependent global solar corona with temporally varying solar-surface magnetic field maps

机译:随时间变化的太阳表面磁场图的时变全球日冕的MHD模拟模型

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[1] We present a model of a time-dependent three-dimensional magnetohydrodynamics simulation of the sub-Alfvenic solar corona and super-Alfvenic solar wind with temporally varying solar-surface boundary magnetic field data. To (i) accommodate observational data with a somewhat arbitrarily evolving solar photospheric magnetic field as the boundary value and (ii) keep the divergence-free condition, we developed a boundary model, here named Confined Differential Potential Field model, that calculates the horizontal components of the magnetic field, from changes in the vertical component, as a potential field confined in a thin shell. The projected normal characteristic method robustly simulates the solar corona and solar wind, in response to the temporal variation of the boundary B_r. We conduct test MHD simulations for two periods, from Carrington Rotation number 2009 to 2010 and from Carrington Rotation 2074 to 2075 at solar maximum and minimum of Cycle 23, respectively. We obtained several coronal features that a fixed boundary condition cannot yield, such as twisted magnetic field lines at the lower corona and the transition from an open-field coronal hole to a closed-field streamer. We also obtained slight improvements of the interplanetary magnetic field, including the latitudinal component, at Earth.
机译:[1]我们提出了随时间变化的三维表面磁流体动力学模拟模型,该模型具有随时间变化的太阳表面边界磁场数据,对亚欧日太阳电晕和超级欧日太阳风具有影响。为了(i)以一定程度任意发展的太阳光层磁场作为边界值来容纳观测数据,并且(ii)保持无散度条件,我们开发了一个边界模型,这里称为受限微分势场模型,该模型计算水平分量垂直分量的变化产生的磁场的电势,被限制在薄壳中。投影法线特征方法响应于边界B_r的时间变化,稳健地模拟了日冕和太阳风。我们分别在太阳最大周期和最小周期23的两个时间段(从2009年至2010年的卡灵顿旋转号和从2074年至2075年的卡灵顿旋转号)进行MHD模拟测试。我们获得了无法产生固定边界条件的几种日冕特征,例如下部电晕处的扭曲磁场线以及从明场日冕孔到近场拖缆的过渡。我们还获得了地球上行星际磁场(包括纬向分量)的轻微改善。

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