Title of article :
A heat flow based cooling model for tectonic plates
Author/Authors :
Hasterok، نويسنده , , D.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
10
From page :
34
To page :
43
Abstract :
Plate tectonic theory predicts subsidence and decreasing heat flow as young, hot buoyant lithosphere ages and cools. Oceanic cooling models are re-calibrated to a new ‘hydrothermal-free’ heat flow dataset to provide a better fit to heat flow on old ( > 80 Ma ) seafloor while simultaneously allowing for a more reasonable mantle potential temperature (1350 °C). The plate model (constant basal temperature) and chablis (constant basal temperature and constant basal heat flow) are tested as viable solutions to the observed data. Both models fit to reasonable values of misfit, but only the plate cooling model is acceptable after considering additional statistical constraints. The best-fitting plate model results in a thinner lithospheric thickness (90 km) than previous estimates. These results improve estimates of global heat loss rate through oceanic crust (29.4 TW, ∼ 44 TW globally) and improves the estimated temporal evolution of the thermal structure of oceanic lithosphere suggesting a shallower lithosphere–asthenosphere boundary. This model can serve as a reference for estimating the global redistribution of heat by ventilated hydrothermal circulation through young seafloor.
Keywords :
global heat loss , heat flow , seafloor spreading , oceanic heat loss , Seafloor age
Journal title :
Earth and Planetary Science Letters
Serial Year :
2013
Journal title :
Earth and Planetary Science Letters
Record number :
2330271
Link To Document :
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