Arid
DOI10.1016/j.icarus.2006.09.004
Hydrocarbon lakes on Titan
Mitri, Giuseppe; Showman, Adam P.; Lunine, Jonathan I.; Lorenz, Ralph D.
通讯作者Mitri, Giuseppe
来源期刊ICARUS
ISSN0019-1035
出版年2007
卷号186期号:2页码:385-394
英文摘要

The Huygens Probe detected dendritic drainage-like features, methane clouds and a high surface relative humidity (similar to 50%) on Titan in the vicinity of its landing site [Tomasko, M.G., and 39 colleagues, 2005. Nature 438, 765-778; Niemann, H.B., and 17 colleagues, 2005. Nature 438, 779-784], suggesting sources of methane that replenish this gas against photo- and charged-particle chemical loss on short (10-100) million year timescales [Atreya, S.K., Adams, E.Y., Niemann, H.B., Demick-Montelara, J.E., Owen, T.C., Fulchignoni, M., Ferri, E, Wilson, E.H., 2006. Planet. Space Sci. In press]. On the other hand, Cassini Orbiter remote sensing shows dry and even desert-like landscapes with dunes [Lorenz, R.D., and 39 colleagues, 2006a. Science 312, 724-727], some areas worked by fluvial erosion, but no large-scale bodies of liquid [Elachi, C., and 34 colleagues, 2005. Science 308, 970-974]. Either the atmospheric methane relative humidity is declining in a steady fashion over time, or the sources that maintain the relative humidity are geographically restricted, small, or hidden within the crust itself. In this paper we explore the hypothesis that the present-day methane relative humidity is maintained entirely by lakes that cover a small part of the surface area of Titan. We calculate the required minimum surface area coverage of such lakes, assess the stabilizing influence of ethane, and the implications for moist convection in the atmosphere. We show that, under Titan’s surface conditions, methane evaporates rapidly enough that shorelines of any existing lakes could potentially migrate by several hundred m to tens of km per year, rates that could be detected by the Cassini orbiter. We furthermore show that the high relative humidity of methane in Titan’s lower atmosphere could be maintained by evaporation from lakes covering only 0.002-0.02 of the whole surface. Published by Elsevier Inc.


英文关键词Titan Saturn, satellites satellites, surface geological processes geophysics
类型Article
语种英语
国家USA ; Italy
收录类别SCI-E
WOS记录号WOS:000244081200007
WOS关键词MIDLATITUDE CLOUDS ; HUYGENS PROBE ; SURFACE ; CASSINI ; OCEAN ; ATMOSPHERE ; METHANE ; ENVIRONMENT ; SCIENCE ; WINDS
WOS类目Astronomy & Astrophysics
WOS研究方向Astronomy & Astrophysics
来源机构University of Arizona
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/154515
作者单位(1)Univ Arizona, Dept Planetary Sci, Tucson, AZ 85721 USA;(2)Univ Arizona, Lunar & Planetary Lab, Tucson, AZ 85721 USA;(3)IFSI, INAF, I-00133 Rome, Italy
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Mitri, Giuseppe,Showman, Adam P.,Lunine, Jonathan I.,et al. Hydrocarbon lakes on Titan[J]. University of Arizona,2007,186(2):385-394.
APA Mitri, Giuseppe,Showman, Adam P.,Lunine, Jonathan I.,&Lorenz, Ralph D..(2007).Hydrocarbon lakes on Titan.ICARUS,186(2),385-394.
MLA Mitri, Giuseppe,et al."Hydrocarbon lakes on Titan".ICARUS 186.2(2007):385-394.
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