论文标题
在二维近似中的原星磁盘中的热表面波的模拟
Simulation of Thermal Surface Waves in a Protoplanetary Disk in a Two-Dimensional Approximation
论文作者
论文摘要
理论模型预测,恒星辐射在原月球磁盘表面上通过不规则性的遮挡会导致朝着恒星传播的自阳性波。但是,传统上是使用1+1D方法模拟了此过程的,即磁盘的垂直静水平衡和IR辐射的垂直扩散可能会扭曲图像。本文介绍了轴向对称气体和尘埃的演化的二维辐射流体动力学模型。在此模型中,但是使用来自1+1D模型的简化假设,我们再现了热表面波的自发产生和传播。我们工作的关键结论是,考虑到二维流体动力学和IR辐射的扩散抑制了在1+1D近似中观察到的热波的自发产生和发展。寻找存在表面热波的可能性,应通过研究原动性磁盘的各种参数的问题来继续进行表面热波。
Theoretical models predict that the obscuration of stellar radiation by irregularities on the surface of a protoplanetary disk can cause self-generating waves traveling towards the star. However, this process is traditionally simulated using the 1+1D approach, the key approximations of which - vertical hydrostatic equilibrium of the disk and vertical diffusion of IR radiation - can distort the picture. This article presents a two-dimensional radiative hydrodynamic model of the evolution of an axially symmetric gas and dust disk. Within this model, but using simplified assumptions from 1+1D models, we have reproduced the spontaneous generation and propagation of thermal surface waves. The key conclusion of our work is that taking into account two-dimensional hydrodynamics and diffusion of IR radiation suppresses the spontaneous generation and development of thermal waves observed in the 1+1D approximation. The search for the possibility of the existence of surface thermal waves should be continued by studying the problem for various parameters of protoplanetary disks.