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Vol 223
Pages:
3
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Plume tectonics – myth or reality?

Authors:
Yu. I. Daragan-Sushchov
About authors
  • VNIIOkeangeologia named after I.S.Gramberg
Date submitted:
2016-09-08
Date accepted:
2016-11-18
Date published:
2017-02-26

Abstract

The paper is dedicated to the role of mantle plumes in the formation of large igneous provinces. From different regions of the world facts are mentioned that contradict key points of plume tectonics. Closer attention is paid to classical volcanic provinces on Hawaiian islands and in Iceland, as well as to Siberian and Deccan Traps, oceanic plateau Ontong Java, Central Atlantic magmatic province, Alfa and Mendeleev Ridges in the Arctic Ocean. A conclusion is drawn that plumes are a special case of mantle-lithospheric flows, which according to deep geophysics are often located horizontally which leaves out their plume origin. Heated masses of mantle substance under young volcanic regions or rift zones of mid-ocean ridges do not emerge from the depth in the form of a straight column, but rather have arbitrary shapes, skewing to the sides and having outgrowths, offshoots, spherical bulges. Vertically rising flows of hot magma (plumes) are not a cause, but an effect of a lithospheric split and rise of magmatic substance due to decompression. A conclusion is made that it is unproductive to exaggerate the shapes and sizes of plumes and use them to explain all the diversity of endogenous processes.

10.18454/pmi.2017.1.3
Go to volume 223

References

  1. Дараган-Сущов Ю.И. Раннетриасовые озера Тунгусской синеклизы // История озер позднего палеозоя и раннего мезозоя. Л.: Наука. 1987. С. 249-257.
  2. Мирлин Е.Г. Возможная природа траппового магматизма (на основе концепций вихревых движений в тектоносфере и нелинейной геофизической среды) / Е.Г.Мирлин, М.В.Кононов, Ю.В.Миронов // Вестник КРАУНЦ. Науки о Земле. 2008. № 2. Вып. 12. С. 28-41.
  3. О геотектонической природе системы Центрально-Арктических морфоструктур и геологическое значение донных осадков в ее определении / В.Я.Кабаньков, И.А.Андреева, В.Н.Иванов, В.И.Петрова // Геотектоника. 2004. № 6. С. 33-48.
  4. Погребицкий Ю.Е. Геологическая природа Арктики // Арктика на пороге третьего тысячелетия (ресурсный потенциал и проблемы экологии). СПб: Наука, 2000. С. 91-104.
  5. Погребицкий Ю.Е. Новейшая динамика литосферы / Ю.Е.Погребицкий, Я.В.Неизвестнов // Геолого-геофизические характеристики литосферы Арктического региона. СПб: ВНИИОкеангеология, 2004. Вып. 5. С. 36-52.
  6. Силантьев С.А. Метаморфические породы дна Атлантического океана. М.: Наука, 1984. 103 с.
  7. Филатова Н.И. Структуры Центральной Арктики и их связь с мезозойским арктическим плюмом / Н.И.Филатова, В.Е.Хаин // Геотектоника. 2009. № 6. С. 24-51.
  8. Anderson D.L. Lithosphere, aesthenosphere, and perisphere // Rev. Geophys. 1995. Vol. 33. P. 125-149.
  9. Basement geochemistry and geochronology of Central Malaita, Solomon Islands, with implications for the origin and evolution of the Ontong Java Plateau / M.L.G.Tejada, J.J.Mahoney, C.R.Neal, R.A.Duncan, M.G.Petterson // Journal of Petrology. 2002. Vol. 43. P. 449-484.
  10. Bathymetry, controlled source seismic and gravity observations of the Mendeleev ridge; implications for ridge structure, origin, and regional tectonics / D.Dove, B.Coakley, J.Hooper, Y.Kristofferson // Geophys. Journal Int. 2010. Vol. 183. N 2. P. 481-502.
  11. Campbell I.H. Large Igneous Provinces and the mantle plume hypothesis // Elements. 2006. N 1. P. 265-269.
  12. Demise of the Siberian plume: paleogeographic and paleotectonic reconstruction from the prevolcanic and volcanic records, North-Central Siberia / G.K.Czamanske, A.B.Gurevich, V.Fedorenko, O.Simonov // Int. Geol. Rev., 1998. N 40. P. 95-115.
  13. Deep structures and breakup along volcanic rifted margins: Insights from integrated studies along the outer Voring Basin (Norway) / L.Gernigon, J.C.Ringenbach, S.Planke, B.Le Gall // Marine and Petroleum Geology, 2004. Vol. 21. N 3. P. 363-372.
  14. Foulger G.R. A cool model for the Icelandhotspot / G.R.Foulger, D.L.Anderson // Journal of Volcanology and Geothermal Research. 2005. N 141. P. 1-22.
  15. Ihinger P.D. Mantle flow beneath the Pacific plate: evidence from seamount segments in the Hawaiian-Emperor chain // American Journal of Science. 1995. Vol. 295. P. 1035-1057.
  16. Korenaga J. Mantle mixing and continental breakup magmatism // Earth Planet. Sci. Lett., 2004. Vol. 218. P. 463-473.
  17. McHone J.G. Non-plume magmatism and rifting during the opening of the central Atlantic Ocean // Tectonophysics. 2000. Vol. 316. P. 287-296.
  18. Menke W. Cold crust in a hot spot / W.Menke, V.Levin // Geophys. Res. Lett. 1994. Vol. 21. N 18. P. 1967-1970.
  19. Sheth H.C. Were the Deccan flood basalts derived in part from ancient oceanic crust within the Indian continental lithosphere? // Gond. Res., 2005. N 8. P. 109-127.
  20. Shilling J.G. Iceland mantle plume // Nature. 1973. Vol. 242. N 54. P. 565-571.
  21. Smith A.D. The planet beyond the plume hypothesis / A.D.Smith, Ch.Lewis // Earth-Science Reviews.1999. Vol. 48. P. 135-182.
  22. Stuart W.D. Propagation of the Hawaiian-Emperor volcano chain by Pacific plate cooling stress / W.D.Stuart, G.R.Foulger, M.Barall // Geological Society of America Special Paper 430. Ed. by G.R.Foulger and D.M.Jurdy. 2007. P. 497-506.
  23. White R.S. Mantle plume and flood basalts / R.S.White, D.McKenzie // J. Geophys. Res. 1995. Vol. 100. N B9. P. 17543-17585.
  24. Zhao D. Global tomographic images of mantle plumes and subducting slabs: insight into deep Earth dynamics // Physics of the Earth and Planetary Interiors. 2004. Vol. 146. P. 3-34.

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