Hydrothermal Activity Along Multiple Ridge Segments of the Northern Central Indian Ridge, 8°-17°S

Title
Hydrothermal Activity Along Multiple Ridge Segments of the Northern Central Indian Ridge, 8°-17°S
Author(s)
손주원; 김종욱; 박상준; 손승규; 문재운; Edward T Baker
KIOST Author(s)
Kim, Jonguk(김종욱)Son, Seung Kyu(손승규)
Alternative Author(s)
손주원; 김종욱; 박상준; 손승규; 문재운
Publication Year
2012-12-03
Abstract
We report the first systematic hydrothermal plume surveys conducted on the northern Central Indian Ridge (CIR, 8-17°S), a slow spreading ridge with rates between ~35 and 40 mm/yr during the CIR research program of KORDI between 2009 and 2011. Evidence for hydrothermal activity was found on each of the seven segments, with most plumes found between 3,000 and 3,500 m. Using only on-axis CTD stations within the axial rift valley, the estimated value of plume incidence (ph=0.218) coincides with the global trend between the spatial density of hydrothermal plumes and full-spreading rate (an indicator of magmatic budget). However, there are also indications of possible discharge from hydrothermal activity or serpentinization from the axial walls or ridge flanks (existent ocean core complexes), as has been observed along the Mid-Atlantic Ridge. Our preliminary results support the increasing role of tectonic control on hydrothermal activity as spreading rates decrease.d 2011. Evidence for hydrothermal activity was found on each of the seven segments, with most plumes found between 3,000 and 3,500 m. Using only on-axis CTD stations within the axial rift valley, the estimated value of plume incidence (ph=0.218) coincides with the global trend between the spatial density of hydrothermal plumes and full-spreading rate (an indicator of magmatic budget). However, there are also indications of possible discharge from hydrothermal activity or serpentinization from the axial walls or ridge flanks (existent ocean core complexes), as has been observed along the Mid-Atlantic Ridge. Our preliminary results support the increasing role of tectonic control on hydrothermal activity as spreading rates decrease.
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/27268
Bibliographic Citation
2012 AGU Fall Meeting, pp.1, 2012
Publisher
American Geophysical Union
Type
Conference
Language
English
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