论文标题

土地覆盖范围,旋转期和水蒸气的影响对赤道气候的影响

Effects of Varying Land Coverage, Rotation Period, and Water Vapor on Equatorial Climates that Bridge the Gap between Earth-like and Titan-like

论文作者

McKinney, Matthew, Mitchell, J., Thomson, S. I.

论文摘要

土星最大的月亮泰坦(Titan)具有类似地球的挥发性周期,但甲烷扮演着水和表面液体储层的作用,在高纬度上是在地理上孤立的。我们在没有季节的地球状气候模型的赤道上重新创建了泰坦的特征干氢气气候,并通过改变一小部分行星参数,将水作为凝结。我们在赤道处使用三个观察动机的标准:1)表面特异性湿度的峰值并不在赤道,尽管它具有最温暖的年度温度; 2)赤道色谱柱中特定湿度的垂直曲线几乎通过对流层较低; 3)赤道表面附近的相对湿度显着低于饱和度(低于60%)。我们发现,简单地减少赤道的可用水不会完全繁殖类似泰坦的条件。我们还改变了水的旋转周期和挥发性,以模仿泰坦较慢的旋转和更丰富的甲烷蒸气。较长的旋转周期与干赤道表面相比,与旋转周期较短的等效实验相比,较少的类似泰坦的标准。与波动率较低的水相比,较高的水波动率更高的实验符合标准,其中一些易波动性的实验符合这三种情况,这表明类似地球的行星只能通过更改几个物理参数来显示类似泰坦的气候。

Saturn's largest moon, Titan, has an Earth-like volatile cycle, but with methane playing the role of water and surface liquid reservoirs geographically isolated at high latitudes. We recreate Titan's characteristic dry hydroclimate at the equator of an Earth-like climate model without seasons and with water as the condensable by varying a small set of planetary parameters. We use three observationally motivated criteria for Titan-like conditions at the equator: 1) the peak in surface specific humidity is not at the equator, despite it having the warmest annual-mean temperatures; 2) the vertical profile of specific humidity in the equatorial column is nearly constant through the lower troposphere; and 3) the relative humidity near the surface at the equator is significantly lower than saturation (lower than 60%). We find that simply reducing the available water at the equator does not fully reproduce Titan-like conditions. We additionally vary the rotation period and volatility of water to mimic Titan's slower rotation and more abundant methane vapor. Longer rotation periods coupled with a dry equatorial surface meet fewer of the Titan-like criteria than equivalent experiments with shorter rotation periods. Experiments with higher volatility of water meet more criteria than those with lower volatility, with some of those with the highest volatility meeting all three, demonstrating that an Earth-like planet can display Titan-like climatology by changing only a few physical parameters.

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