论文标题
具有人为增强的亮度的太阳能模型的二维模拟。 ii。对内部重力波的影响
Two-dimensional simulations of solar-like models with artificially enhanced luminosity. II. Impact on internal gravity waves
论文作者
论文摘要
人为地增加模型的光度和热扩散率是在恒星对流的流体动力学模拟中采用的一种常见策略。在这项工作中,我们分析了这些人工修饰对恒星内部物理特性,特别是对内部重力波的影响。我们使用音乐代码对类似太阳能的星星进行二维模拟。我们将具有不同光度增强因子的三个模型与参考模型进行比较。结果证实,波的性质受到亮度和热扩散率的人工增强的影响。我们发现,恒星光度的增加会导致对流离职时间尺度的减少和内部波动激发的特征频率的增加。我们还表明,模型中较高的能量输入对应于较大的光度,导致高频波中的能量较高。在我们的亮度和热扩散性的测试中,提高了104倍,我们的结果与辐射阻尼的理论预测一致。增加亮度也会影响对流边界上振荡动作的振幅。在解释基于人工增强的发光度的流体动力学模拟的内部重力波研究时,必须谨慎行事。
Artificially increasing the luminosity and the thermal diffusivity of a model is a common tactic adopted in hydrodynamical simulations of stellar convection. In this work, we analyse the impact of these artificial modifications on the physical properties of stellar interiors and specifically on internal gravity waves. We perform two-dimensional simulations of solar-like stars with the MUSIC code. We compare three models with different luminosity enhancement factors to a reference model. The results confirm that properties of the waves are impacted by the artificial enhancement of the luminosity and thermal diffusivity. We find that an increase in the stellar luminosity yields a decrease in the bulk convective turnover timescale and an increase in the characteristic frequency of excitation of the internal waves. We also show that a higher energy input in a model, corresponding to a larger luminosity, results in higher energy in high frequency waves. Across our tests with the luminosity and thermal diffusivity enhanced together by up to a factor of 104, our results are consistent with theoretical predictions of radiative damping. Increasing the luminosity also has an impact on the amplitude of oscillatory motions across the convective boundary. One must use caution when interpreting studies of internal gravity waves based on hydrodynamical simulations with artificially enhanced luminosity.