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Stratospheric global winds on Titan at the time of Huygens descent

机译:全球平流层风在土星的卫星泰坦上的时候

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摘要

Measurements of stratospheric zonal winds on Titan were made in preparation for and during the time of the descent of the Huygens Probe into Titan's atmosphere on 14 January 2005. Fully resolved emission lines from ethane near 11.7 μm were measured on the east, center, and west positions on Titan using the NASA/GSFC Heterodyne Instrument for Planetary Wind And Composition, HIPWAC, mounted on the National Astronomical Observatory of Japan 8.2 m Subaru Telescope on Mauna Kea, Hawaii. Analysis of the Doppler shifts of the emission line shapes yielded mean prograde gas velocity ~60 ± 65 m/s at altitudes below ~120 km (~5 mbar). This result is consistent with retrievals from the Huygens Doppler Wind Experiment and from other observations near this altitude range. Current spectral line shapes, however, differed significantly from those obtained in similar measurements on Subaru in 2004 and on the NASA IRTF in 1993–1996, which retrieved prograde zonal winds 190 ± 90 m/s at 230 km (~0.4 mbar). The cores of the emission lines, which probe the high-altitude region, could not be fitted as before to retrieve wind directly using the accepted atmospheric model for Titan. They imply an approximately tenfold increase in ethane mole fraction (1.2 × 10?4) with strong wind shear above the stratopause, providing a potential probe of the lower mesosphere and possible evidence of temporal and spatial variability. Results contribute to coordinated measurements of winds by various techniques providing information on the altitude distribution of wind velocity in Titan's atmosphere from near the surface to the lower mesosphere.
机译:测量平流层纬向风土卫六在准备期间血统的惠更斯号探测器到土卫六2005年1月14日的气氛。发射谱线附近乙烷11.7μm东,中心,西方的立场使用美国航空航天局/戈达德宇航中心外差土卫六仪器行星风和组合,HIPWAC,安装在全国天文数字日本天文台8.2米斯巴鲁望远镜夏威夷莫纳克亚山山顶。发射谱线形状的产生意味着进变质气速~ 60±在海拔低于120 ~ 65 m / s公里(~ 5 mbar)。从惠更斯多普勒风的检索从其他观测实验和在这附近高度范围。然而,从这些显著不同在斯巴鲁在类似的测量获得2004年,NASA IRTF在1993 - 1996年那样,千米检索其纬向风190±90 m / s230公里(~ 0.4 mbar)。行调查高海拔地区,不能安装在风前检索直接使用公认的大气模型泰坦。乙烷摩尔分数增加(1.2×10 ? 4)具有较强的风切变在平流层顶之上,提供一个较低的潜在探针中间层和可能的时间和的证据空间变异性。协调各种测量风速技术提供信息的高度风速分布在土卫六从表面附近大气低中间层。

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  • 来源
    《Journal of geophysical research. Planets》 |2006年第e7期|E07S03-1-E07S03-9-0|共9页
  • 作者单位

    Visiting astronomer at Subaru Telescope, operated by the National Astronomical Observatory of Japan, Hilo, Hawaii, USA Institute for Astronomy, University of Hawaii, Honolulu, Hawaii, USA;

    NASA Goddard Space Flight Center, Greenbelt, Maryland, USA Visiting astronomer at Subaru Telescope, operated by the National Astronomical Observatory of Japan, Hilo, Hawaii, USA Universities Space Research Association, Washington, D. C., USA;

    Visiting astronomer at Subaru Telescope, operated by the National Astronomical Observatory of Japan, Hilo, Hawaii, USA Max-Planck-Institut für Radioastronomie, Bonn, GermanyNASA Goddard Space Flight Center, Greenbelt, Maryland, USA Visiting astronomer at Subaru Telescope, operated by the National Astronomical Observatory of Japan, Hilo, Hawaii, USANASA Goddard Space Flight Center, Greenbelt, Maryland, USA Visiting astronomer at Subaru Telescope, operated by the National Astronomical Observatory of Japan, Hilo, Hawaii, USA I. Physikalisches Institut, Universit?t zu K?ln, Cologne, GermanyNASA Goddard Space Flight Center, Greenbelt, Maryland, USA Department of Astronomy, University of Maryland, College Park, Maryland, USAI. Physikalisches Institut, Universit?t zu K?ln, Cologne, GermanyNASA Goddard Space Flight Center, Greenbelt, Maryland, USA;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
  • 关键词

    Wind; ethane; Astronomical observatoriesdescentEMISSION LINESTitanDoppler effectstratopausewind shear;

    机译:风;ethane Astronomicaleffectstratopausewind剪切;

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