论文标题

内部加热的多孔对流:Ecceladus水热活动的理想化模型

Internally heated porous convection: an idealised model for Enceladus' hydrothermal activity

论文作者

Reun, Thomas Le, Hewitt, Duncan R.

论文摘要

最近的行星数据和地球物理建模表明,在土耳其卫星之一的冰层冰壳下,水热活动正在进行中。根据这些模型,卫星的多孔,岩石芯中的热液流动是由潮汐变形驱动的,从而诱导耗散和体积的内部加热。尽管在建模地球座的内部建模方面,但仍缺乏对内部加热的多孔对流和水热活动的系统理解 - 甚至基本的缩放定律。在本文中,使用内部加热的多孔介质的理想化模型,我们在数值和理论上探索了远离对流开始的流量。特别是,我们通过对流流量以及在多孔层顶部产生的热通量异常的典型程度和强度来量化热传输效率。借助我们理想化的模型,我们得出了可以在冰冷月亮海洋中驱动的温度和水热速度的简单和一般定律。将来,这些法律可以帮助更好地约束Exceladus和其他冰冷卫星内部的模型。

Recent planetary data and geophysical modelling suggest that hydrothermal activity is ongoing under the ice crust of Enceladus, one of Saturn's moons. According to these models, hydrothermal flow in the porous, rocky core of the satellite is driven by tidal deformation that induces dissipation and volumetric internal heating. Despite the effort in the modelling of Enceladus' interior, systematic understanding---and even basic scaling laws---of internally-heated porous convection and hydrothermal activity are still lacking. In this article, using an idealised model of an internally-heated porous medium, we explore numerically and theoretically the flows that develop close and far from the onset of convection. In particular, we quantify heat-transport efficiency by convective flows as well as the typical extent and intensity of heat-flux anomalies created at the top of the porous layer. With our idealised model, we derive simple and general laws governing the temperature and hydrothermal velocity that can be driven in the oceans of icy moons. In the future, these laws could help better constraining models of the interior of Enceladus and other icy satellites.

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