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Plume heat flow in a numerical model of mantle convection with moving plates

机译:带有活动板的地幔对流数值模型中的羽流热流

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Self-consistent numerical models are presented for a two-dimensional thermal convection with moving plates to estimate the heat flow transported by hot upwelling plumes in both internally and basally heated mantle. The plume heat flow depends on the internal heating rate and convective regimes but does not exceed 30% of basal heat flow when the plates rigidly move as observed on the Earth; the fraction of plume heat flow to basal heat flow becomes higher when the lithosphere behaves as a stagnant lid or as a mechanically not so strong plate. When estimated from the dynamic topography of plume-swells above hot upwelling plumes, the plume heat flow appears to be only a small fraction of the real plume heat flow. As a whole, the apparent plume heat flow estimated from dynamic topography remains only a few percent of the total heat flow on the surface boundary, the value observed for the Earth, even when the basal heating rate exceeds 50% of the total heating 'rate. Such a high fraction of basal heating rate is necessary for the amplitude of topography above hot upwelling plumes to become comparable to the value observed for the Earth, too. It is necessary to reexamine the earlier inference that the heat released from the core manifests itself as plume beat flow in the Earth. (c) 2005 Elsevier B.V. All rights reserved.
机译:提出了带有移动板的二维热对流的自洽数值模型,以估计内部和基础加热地幔中热上升流羽流传递的热流。羽状热流取决于内部加热速率和对流方式,但当板在地球上观察到刚性运动时,羽流的热流不超过基础热流的30%;当岩石圈表现为停滞的盖或力学上不太坚固的板时,羽流热流相对于基础热流的比例会更高。从热上升流上方的羽流的动态地形进行估算时,羽流热流似乎只是实际羽流热流的一小部分。总体而言,根据动态地形估算出的表观羽流热流仅占表面边界总热流的百分之几,即地球观测到的值,即使基础加热速率超过总加热速率的50% 。如此高的基础加热速率是热上升流羽流上方的地形振幅变得与地球观测值相当所必需的。有必要重新审视先前的推论,即从岩心释放出的热量表现为地球上的羽流拍打流。 (c)2005 Elsevier B.V.保留所有权利。

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