HOTSPOTS, MANTLE PLUMES AND CORE HEAT LOSS

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dc.contributor.author Labrosse S.
dc.date.accessioned 2021-04-17T03:53:44Z
dc.date.available 2021-04-17T03:53:44Z
dc.date.issued 2002
dc.identifier https://www.elibrary.ru/item.asp?id=1068686
dc.identifier.citation Earth and Planetary Science Letters, 2002, 199, 1-2, 147-156
dc.identifier.issn 0012-821X
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/27976
dc.description.abstract The heat flux at the core-mantle boundary (CMB) is a key parameter for core dynamics since it controls its cooling. However, it is poorly known and estimates range from 2 TW to 10 TW. The lowest bound comes from estimates of buoyancy fluxes of hotspots under two assumptions: that they are surface expression of mantle plumes originating from the base of the mantle, and that they are responsible for the totality of the heat flux at the CMB. Using a new procedure to detect plumes in a numerical model of Rayleigh-Benard convection (convection between isothermal horizontal planes) with internal heating, it is shown that many hot plumes that start from the bottom boundary do not reach the top surface and that the bottom heat flux is primarily controlled by the arrival of cold plumes. Hot plumes easily form at the bottom boundary but they are mostly due to the spreading of cold plume heads that allow the concentration of hot matter. These plumes are generally not buoyant enough to cross the whole system and the hot plumes that reach the top surface result from an interaction between several hot plumes. According to this simple dynamical behavior, the heat flux at the bottom boundary is shown to be strongly correlated with the advection due to cold plumes and not with advection by hot plumes that arrive at the surface. It is then inferred that the heat flux out of hotspots can only give a lower bound to the heat flow at the CMB and that knowing the advection by subducted plates would give a better estimate.
dc.subject CONVECTION
dc.subject PLUMEES
dc.subject DYNAMICS
dc.subject HEAT FLUX
dc.subject HEATING
dc.title HOTSPOTS, MANTLE PLUMES AND CORE HEAT LOSS
dc.type Статья


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