论文标题
内部强迫对辐射巨型行星大气环流的影响
Influences of internal forcing on atmospheric circulations of irradiated giant planets
论文作者
论文摘要
具有强烈恒星辐射的近距离巨型行星显示具有强大赤道喷气机和全球尺寸固定波的大气循环模式。到目前为止,几乎所有建模都在此类巨型行星的大气环环上起作用,主要仅视为外部辐射,而无需考虑内部热通量的作用,或者只是以非常简化的方式对其进行处理。在这里,我们通过考虑内部强迫的效果来研究强烈辐照的巨型行星的大气循环,该强迫的特征是小规模随机的内部热扰动,使用三维大气通用循环模型。我们表明,在存在相对强大的内部强迫的情况下,扰动激发的波可以在很大程度上改变大气循环模式。具体而言,我们的模拟证明了三个循环制度:超端制度,中纬度射流机制和准周期性振荡制度,具体取决于外部和内部强迫的相对重要性。还发现强大的内部强迫会引起热相曲线的明显修改。
Close-in giant planets with strong stellar irradiation show atmospheric circulation patterns with strong equatorial jets and global-scale stationary waves. So far, almost all modeling works on atmospheric circulations of such giant planets have mainly considered external radiation alone, without taking into account the role of internal heat fluxes or just treating it in very simplified ways. Here, we study atmospheric circulations of strongly irradiated giant planets by considering the effect of internal forcing, which is characterized by small-scale stochastic interior thermal perturbations, using a three-dimensional atmospheric general circulation model. We show that the perturbation-excited waves can largely modify atmospheric circulation patterns in the presence of relatively strong internal forcing. Specifically, our simulations demonstrate three circulation regimes: superrotation regime, midlatitude-jet regime, and quasi-periodic oscillation regime, depending on the relative importance of external and internal forcings. It is also found that strong internal forcing can cause noticeable modifications of the thermal phase curves.