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    High resolution temperature measurements in the borehole Yaxcopoil-1, Mexico

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    Author
    Wilhelm, H.
    Heidinger, P.
    Šafanda, J.
    Čermák, V.
    Burkhardt, H.
    Popov, Y.
    Issue Date
    2004-01-01
    Keywords
    Chicxulub
    Yaxcopoil-1
    Groundwater
    Heat flow
    Karst
    
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    Show full item record
    Citation
    Wilhelm, H., Heidinger, P., Šafanda, J., Čermák, V., Burkhardt, H., & Popov, Y. (2004). High resolution temperature measurements in the borehole Yaxcopoil‐1, Mexico. Meteoritics & Planetary Science, 39(6), 813-819.
    Publisher
    The Meteoritical Society
    Journal
    Meteoritics & Planetary Science
    URI
    http://hdl.handle.net/10150/655844
    DOI
    10.1111/j.1945-5100.2004.tb00931.x
    Additional Links
    https://meteoritical.org/
    Abstract
    Within the frame of the International Continental Deep Drilling Program (ICDP) and as a part of the Chicxulub Scientific Drilling Project (CSDP), high resolution temperature measurements were performed in the borehole Yaxcopoil-1 (Yax-1). The temperature was logged to the depth of 858 m seven times between March 6-19, 2002, starting 10 days after the hole was shut in and mud circulation ceased. Successive logs revealed only small temperature variations in time and space, indicating a fast temperature recovery to almost undisturbed conditions prior to the first log. From these logs, a mean temperature gradient of ~37 mK/m was determined below the uppermost 250 m. Another temperature log was recorded on May 24, 2003 (15 months after the shut in) to a depth of 895 m. The obtained temperature profile is very similar to the 2002 profile, with an insignificantly higher mean gradient below 250 m that may indicate a long-term return to the pre-drilling temperature. The temperature in the uppermost part of the hole bears signs of considerable influence of a convective contribution to the vertical thermal heat transfer. The depth extent of the convection seems to have deepened from 150 m in March 2002 to 230 m in May 2003. Based on the observed temperature gradient and the rock types encountered in the borehole above 670 m, the conducted heat flow is expected to be in the range 65-80 mW/m2.
    Type
    Article
    text
    Language
    en
    ISSN
    1945-5100
    ae974a485f413a2113503eed53cd6c53
    10.1111/j.1945-5100.2004.tb00931.x
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    Meteoritics & Planetary Science, Volume 39, Number 6 (2004)

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