...
首页> 外文期刊>Astronomy and astrophysics >Exploring the climate of Proxima B with the Met Office Unified Model
【24h】

Exploring the climate of Proxima B with the Met Office Unified Model

机译:通过Met Office Unified Model探索Proxima B的气候

获取原文

摘要

We present results of simulations of the climate of the newly discovered planet Proxima Centauri B, performed using the Met Office Unified Model (UM). We examine the responses of both an “Earth-like” atmosphere and simplified nitrogen and trace carbon dioxide atmosphere to the radiation likely received by Proxima Centauri B. Additionally, we explore the effects of orbital eccentricity on the planetary conditions using a range of eccentricities guided by the observational constraints. Overall, our results are in agreement with previous studies in suggesting Proxima Centauri B may well have surface temperatures conducive to the presence of liquid water. Moreover, we have expanded the parameter regime over which the planet may support liquid water to higher values of eccentricity (?0.1) and lower incident fluxes (881.7 W m-2) than previous work. This increased parameter space arises because of the low sensitivity of the planet to changes in stellar flux, a consequence of the stellar spectrum and orbital configuration. However, we also find interesting differences from previous simulations, such as cooler mean surface temperatures for the tidally-locked case. Finally, we have produced high-resolution planetary emission and reflectance spectra, and highlight signatures of gases vital to the evolution of complex life on Earth (oxygen, ozone and carbon dioxide).
机译:我们介绍了使用Met Office统一模型(UM)进行的新发现行星Proxima Centauri B气候模拟的结果。我们研究了“类地球”大气以及简化的氮和痕量二氧化碳大气对Proxima Centauri B可能接收到的辐射的响应。此外,我们使用一系列偏心率指导研究了轨道偏心率对行星条件的影响受观测限制。总的来说,我们的结果与以前的研究相吻合,表明半人马蜂Proxima B可能具有有利于液态水存在的表面温度。此外,我们已经扩大了参数范围,在这个范围内,行星可以比以前的工作将液态水支持到更高的偏心率值(?0.1)和更低的入射通量(881.7 W m-2)。由于行星对恒星通量变化的敏感性较低,这是由于恒星光谱和轨道结构的结果,因此出现了增大的参数空间。但是,我们还发现与以前的模拟有一些有趣的差异,例如潮汐锁定情况下平均表面温度较低。最后,我们制作了高分辨率的行星辐射和反射光谱,并突出了对地球复杂生命的演化至关重要的气体(氧气,臭氧和二氧化碳)的信号特征。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号