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The influence of thermochemical convection on the fixity of mantle plumes

机译:热化学对流对地幔柱固定性的影响

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A general feature of both isochemical and thermochemical studies of mantle convection is that horizontal plume velocities tend to be smaller than typical convective velocities, however, it is not clear which system leads to a greater fixity of mantle plumes. We perform two- and three-dimensional numerical calculations and compare both thermochemical and isochemical cases with similar convective vigor to determine whether presence of a dense component in the mantle can lead to smaller ratios of horizontal plume velocity to surface velocity. We investigate different viscosity and density contrasts between chemical components in the thermochemical calculations, and we perform isochemical calculations with both free-slip and no-slip bottom boundary conditions. We then compare both visually and quantitatively the results of the thermochemical and isochemical calculations to determine which leads to greater plume fixity. We find that horizontal plume velocities for thermochemical calculations are similar to those from isochemical calculations with no-slip bottom boundary conditions. In addition, we find that plumes tend to be more fixed for isochemical cases with free-slip bottom boundary conditions for two-dimensional calculations, however, in three dimensions, we find that plume fixity is similar to that observed in thermochemical calculations.
机译:地幔对流的等化学和热化学研究的一般特征是水平羽流速度往往小于典型的对流速度,但是,尚不清楚哪个系统会导致更大的地幔羽流固定性。我们执行二维和三维数值计算,并将对流势相似的热化学和等化学情况进行比较,以确定地幔中是否存在致密组分是否会导致水平羽流速度与表面速度之比变小。我们在热化学计算中研究化学成分之间的不同粘度和密度对比,并在自由滑和无滑底边界条件下进行等化学计算。然后,我们在视觉和定量上比较热化学和等化学计算的结果,以确定哪些导致更大的羽状固定性。我们发现,用于热化学计算的水平羽流速度与在无滑动底部边界条件下的等化学计算的速度相似。此外,对于二维计算,我们发现在具有自由滑动底边界条件的等化学情况下,羽流往往更固定,但是,在三个维度上,我们发现羽流的固定性与热化学计算中观察到的相似。

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