论文标题

对泰坦的空气相互作用:辐射转移对湖泊蒸发和大气循环的影响

Air-sea interactions on Titan: effect of radiative transfer on the lake evaporation and atmospheric circulation

论文作者

Chatain, Audrey, Rafkin, Scot C. R., Soto, Alejandro, Hueso, Ricardo, Spiga, Aymeric

论文摘要

泰坦的北部高纬度地区设有许多大型碳氢化合物湖泊。像地球上的水湖一样,泰坦的湖泊不断蒸发。该过程强烈影响大气中的甲烷丰度,大气温度,混合层温度和局部风循环。在这项工作中,我们使用与平板湖模型相连的2D大气中尺度模型,以研究太阳和红外辐射对泰坦湖泊和大气之间能量和甲烷交换的影响。太阳辐射通过其厚厚的大气到达泰坦表面的大小仅为几美元^{-2} $。但是,我们发现这种小能量输入很重要,并且与潜在的和明智的热通量相​​当,正如Rafkin和Soto(2020年)的先前研究中所建议的那样。该模型中灰色辐射方案的实施证实了在研究泰坦表面的湖泊时的辐射重要性。太阳和红外辐射改变了系统的能量平衡,导致甲烷蒸发速率提高,平衡湖泊温度的升高几乎完全取决于环境(湿度,破坏性和背景风),并加强了当地海风,从而经历了昼夜变化。海风从湖泊到陆地有效地水平运输甲烷蒸气,并且由于沿着海风前部的运动升高以及辐射引起的陆地上的湍流而垂直运输。

Titan's northern high latitudes host many large hydrocarbon lakes. Like water lakes on Earth, Titan's lakes are constantly subject to evaporation. This process strongly affects the atmospheric methane abundance, the atmospheric temperature, the lake mixed layer temperature, and the local wind circulation. In this work we use a 2D atmospheric mesoscale model coupled to a slab lake model to investigate the effect of solar and infrared radiation on the exchange of energy and methane between Titan's lakes and atmosphere. The magnitude of solar radiation reaching the surface of Titan through its thick atmosphere is only a few $Wm^{-2}$. However, we find that this small energy input is important and is comparable in absolute magnitude to the latent and sensible heat fluxes, as suggested in the prior study by Rafkin and Soto (2020). The implementation of a gray radiative scheme in the model confirms the importance of radiation when studying lakes at the surface of Titan. Solar and infrared radiation change the energy balance of the system leading to an enhancement of the methane evaporation rate, an increase of the equilibrium lake temperature almost completely determined by its environment (humidity, insolation, and background wind), and a strengthening of the local sea breeze, which undergoes diurnal variations. The sea breeze efficiently transports methane vapor horizontally, from the lake to the land, and vertically due to rising motion along the sea breeze front and due to radiation-induced turbulence over the land.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源