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The Lakes and Seas of Titan

机译:泰坦的湖泊和海洋

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摘要

Analogous to Earth's water cycle, Titan's methane-based hydrologic cycle supports standing bodies of liquid and drives processes that result in common morphologic features including dunes, channels, lakes, and seas. Like lakes on Earth and early Mars, Titan's lakes and seas preserve a record of its climate and surface evolution. Unlike on Earth, the volume of liquid exposed on Titan's surface is only a small fraction of the atmospheric reservoir. The volume and bulk composition of the seas can constrain the age and nature of atmospheric methane, as well as its interaction with surface reservoirs. Similarly, the morphology of lacustrine basins chronicles the history of the polar landscape over multiple temporal and spatial scales. The distribution of trace species, such as noble gases and higher-order hydrocarbons and nitriles, can address Titan's origin and the potential for both prebiotic and biotic processes. Accordingly, Titan's lakes and seas represent a compelling target for exploration.
机译:类似于地球的水循环,泰坦的基于甲烷的水文循环支持液体的常规体系,导致常见形态学特征,包括沙丘,渠道,湖泊和海洋。就像地球和早期火星的湖泊一样,泰坦的湖泊和海洋保留了其气候和表面演变的记录。与地球不同,暴露在泰坦表面上的液体的体积只是大气压储层的一小部分。海洋的体积和散装组成可以限制大气甲烷的年龄和性质,以及其与表面储层的相互作用。同样,湖泊盆地的形态记载了在多个时间和空间尺度上的极地景观的历史。痕量物种的分布,如惰性气体和高阶烃和腈,可以解决泰坦的起源和益生元和生物过程的可能性。因此,泰坦的湖泊和海洋代表了探索的令人信服的目标。

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