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首页> 外文期刊>The Astrophysical journal >Atmospheric Circulation and Thermal Phase-curve Offset of Tidally and Nontidally Locked Terrestrial Exoplanets
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Atmospheric Circulation and Thermal Phase-curve Offset of Tidally and Nontidally Locked Terrestrial Exoplanets

机译:潮汐和非潮汐锁定地球系外行星的大气环流和热相曲线偏移

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Using an idealized general circulation model, we investigate the atmospheric circulation of Earth-like terrestrial planets in a variety of orbital configurations. We relax the common assumption of the planet being tidally locked and look at the role atmospheric dynamics can have in the observed thermal phase curve when the substellar point is nonstationary. In slowly rotating planets, a moving forcing can induce strong jets in the upper troposphere, both prograde and retrograde, sensitive to the speed and direction of the diurnal forcing. We find that, consistent with previous shallow-water model experiments, the thermal phase-curve offset is sensitive to the velocity of the substellar point moving across the surface of the planet. For a planet with a known orbital period, the results show that the observed hot spot on the planet could be either east or west of the substellar point, depending on whether the planet is tidally locked or not.
机译:使用理想化的一般环流模型,我们研究了各种轨道配置下的类地球行星的大气环流。我们放宽了行星被潮汐锁定的一般假设,并研究了当副星点不稳定时,大气动力学在观测到的热相曲线中所起的作用。在缓慢旋转的行星中,移动的强迫会在对流层上部诱发强射流,包括前进和后退,这对昼夜强迫的速度和方向很敏感。我们发现,与先前的浅水模型实验一致,热相曲线偏移量对跨行星表面移动的星下点的速度敏感。对于一个已知轨道周期的行星,结果表明,根据该行星是否被潮汐锁定,该行星上观测到的热点可能在星下点的东边或西边。

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