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首页> 外文期刊>Journal of geophysical research. Planets >The Resilience of Habitable Climates Around Circumbinary Stars
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The Resilience of Habitable Climates Around Circumbinary Stars

机译:周围居住环境的适应力Circumbinary明星

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摘要

Here we use a 3-D climate system model to study the habitability of Earth-like planets orbiting in circumbinary systems. In the most extreme cases, Earth-like planets in circumbinary systems could experience variations in the incident stellar flux of up to ~50% on ~100-day timescales. However, we find that Earth-like planets, having abundant surface liquid water, are generally effective at buffering against these time-dependent changes in the stellar irradiation due to the high thermal inertia of oceans compared with the relatively short periods of circumbinary-driven variations in the received stellar flux. Ocean surface temperatures exhibit little to no variation in time; however, land surfaces can experience modest changes in temperature, thus exhibiting an additional mode of climate variability driven by the circumbinary variations. Still, meaningful oscillations in surface temperatures are only found for circumbinary system architectures featuring the largest physically possible amplitudes in the stellar flux variation. In the most extreme cases, an Earth-like planet could experience circumbinary-driven variations in the global mean land surface temperature of up to ~5 K, and variations of local daytime maximum temperatures of up to ~12 K on seasonal timescales, while the global mean ocean temperatures vary by less than ~2 K. Such seasonal temperature swings over land areas could potentially pose adaptability challenges for extant life. Still, habitable planets in circumbinary systems appear to be remarkably resilient against circumbinary-driven climate variations and can avoid any true climate catastrophes.
机译:这里我们使用一个三维气候系统模型来研究类地行星的宜居性circumbinary系统。情况下,类地行星circumbinary系统有变化的事件吗恒星的通量~ 50% ~ 100天时间尺度。行星,拥有丰富的表面液态水,通常有效的缓冲反对这些时间变化的恒星辐照由于高的热惯性海洋相比,相对较短的时期circumbinary-driven变化的恒星通量。时间几乎没有变化;表面能体验适度调整温度,从而表现出额外的模式circumbinary气候变化驱动的变化。表面温度只发现circumbinary系统架构的最大可能的振幅恒星通量变化。情况下,一个类地行星可以体验circumbinary-driven变化在全球的意思地表温度的~ 5 K,和当地白天最高气温的变化~ 12 K的季节性时间尺度,而全球平均不到海洋温度变化~ 2 K。区域可能产生适应性挑战现存的生活。行星似乎在circumbinary系统对circumbinary-driven非常有弹性气候变化,可以避免任何真正的气候灾难。

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