首页> 外文期刊>Physics of the Earth and Planetary Interiors: A Journal Devoted to Obsevational and Experimerntal Studies of the Chemistry and Physics of Planetary Interiors and Their Theoretical Interpretation >Effects of latent heat release at phase boundaries on flow in the Earth's mantle, phase boundary topography and dynamic topography at the Earth's surface
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Effects of latent heat release at phase boundaries on flow in the Earth's mantle, phase boundary topography and dynamic topography at the Earth's surface

机译:相界处潜热释放对地幔流动,地表相界形貌和动态形貌的影响

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摘要

Mantle flow models that do not consider the effects of latent heat on phase boundaries typically predict dynamic surface topography too large to be compatible with observations. Here these effects were implemented in a mantle flow model and resulting changes in dynamic topography and topography of phase boundaries were computed. Inclusion of these effects was found to reduce the rms amplitude of dynamic topography by about 50-60 m, still leaving a substantial misfit from observations in most cases considered. Generally, it also leads to a slight improvement of correlation with dynamic surface and phase boundary topography constrained by observations. Results thus indicate that the model implemented here is applicable to the Earth, but that other effects need to be considered as well in order to fully explain phase boundary and dynamic surface topographies. (c) 2007 Elsevier B.V. All rights reserved.
机译:不考虑潜热对相边界的影响的地幔流模型通常会预测动态表面形貌太大而无法与观测值兼容。在这里,这些影响是在地幔流模型中实现的,并且计算了动态形貌和相边界形貌的变化。发现将这些影响包括在内可将动态地形的均方根振幅降低约50-60 m,但在大多数考虑的情况下,仍然与观测值存在很大的不匹配。通常,它还会导致与受观测约束的动态表面和相边界形貌的相关性略有改善。因此,结果表明,此处实施的模型适用于地球,但还需要考虑其他影响,以便充分说明相边界和动态表面形貌。 (c)2007 Elsevier B.V.保留所有权利。

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