A COUPLED PETROLOGICAL-TECTONIC MODEL FOR SEDIMENTARY BASIN EVOLUTION: THE INFLUENCE OF METAMORPHIC REACTIONS ON BASIN SUBSIDENCE

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dc.contributor.author Petrini K.
dc.contributor.author Connolly J.A.D.
dc.contributor.author Podladchikov Yu.Yu.
dc.date.accessioned 2021-03-05T03:25:27Z
dc.date.available 2021-03-05T03:25:27Z
dc.date.issued 2001
dc.identifier https://elibrary.ru/item.asp?id=13837581
dc.identifier.citation Terra Nova, 2001, 13, 5, 354-359
dc.identifier.issn 0954-4879
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/26310
dc.description.abstract The lithosphere is subject to fluctuations in temperature and pressure during the formation of sedimentary basins. These fluctuations cause metamorphic reactions that change the density of the lithosphere, which, in turn, influences basin subsidence. This contribution develops a model for sedimentary basin formation to assess the importance of this coupling. The model shows that basin subsidence is significantly affected by metamorphic densification. Compared to results obtained with cruder density models, metamorphic densification accelerates subsidence in the initial post-rifting stages as garnet becomes stable over an increasing depth interval within the mantle, an effect that amplifies the crust–mantle density contrast. For models with an extraordinarily cold lithosphere, uplift is generated as a late stage of basin evolution. In general, subsidence is not smooth but occurs instead in small steps reflecting periods of accelerated/decelerated subsidence. For typical crustal thicknesses, subsidence is controlled largely by reactions in the mantle, and particularly those determining garnet stability.
dc.title A COUPLED PETROLOGICAL-TECTONIC MODEL FOR SEDIMENTARY BASIN EVOLUTION: THE INFLUENCE OF METAMORPHIC REACTIONS ON BASIN SUBSIDENCE
dc.type Статья


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