Title of article :
Global warming of the mantle beneath continents back to the Archaean
Author/Authors :
Coltice، نويسنده , , Nicolas and Bertrand، نويسنده , , Hervé and Rey، نويسنده , , Patrice and Jourdan، نويسنده , , Fred and Phillips، نويسنده , , Benjamin R. and Ricard، نويسنده , , Yanick، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
13
From page :
254
To page :
266
Abstract :
Throughout its history, the Earth has experienced global magmatic events that correlate with the formation of supercontinents. This suggests that the distribution of continents at the Earthʹs surface is fundamental in regulating mantle temperature. Nevertheless, most large igneous provinces (LIPs) are explained in terms of the interaction of a hot plume with the lithosphere, even though some do not show evidence for such a mechanism. The aggregation of continents impacts on the temperature and flow of the underlying mantle through thermal insulation and enlargement of the convection wavelength. Both processes tend to increase the temperature below the continental lithosphere, eventually triggering melting events without the involvement of hot plumes. This model, called mantle global warming, has been tested using 3D numerical simulations of mantle convection [Coltice, N., Phillips, B.R., Bertrand, H., Ricard, Y., Rey, P. (2007) Global warming of the mantle at the origin of flood basalts over supercontinents. Geology 35, 391–394.]. Here, we apply this model to several continental flood basalts (CFBs) ranging in age from the Mesozoic to the Archaean. Our numerical simulations show that the mantle global warming model could account for the peculiarities of magmatic provinces that developed during the formation of Pangea and Rodinia, as well as putative Archaean supercontinents such as Kenorland and Zimvaalbara.
Keywords :
mantle convection , Continental flood basalt , Large igneous provinces , plume , Supercontinent
Journal title :
Gondwana Research
Serial Year :
2009
Journal title :
Gondwana Research
Record number :
2363759
Link To Document :
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