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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Constraining olivine abundance and water content of the mantle at the 410-km discontinuity from the elasticity of olivine and wadsleyite
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Constraining olivine abundance and water content of the mantle at the 410-km discontinuity from the elasticity of olivine and wadsleyite

机译:在橄榄石和瓦德斯利石的弹性下,在410公里的不连续中约束橄榄石丰度和水含量

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Velocity and density jumps across the 410-km seismic discontinuity generally indicate olivine contents of similar to 30 to 50 vol.% on the basis of the elastic properties of anhydrous olivine and wadsleyite, which is considerably less than the similar to 60% olivine in the widely accepted pyrolite model for the upper mantle. A possible explanation for this discrepancy is that water dissolved in olivine and wadsleyite affects their elastic properties in ways that can reconcile the pyrolitic model with seismic observations. In order to more fully constrain the olivine content of the upper mantle near the 410-km discontinuity, and to place constraints on the mantle water content at this depth, we determined the full elasticity of hydrous wadsleyite at the P-T conditions of the discontinuity based on density functional theory calculations. Together with previous determinations for the effect of water on olivine elasticity, we simultaneously modeled the density and seismic velocity jumps (Delta(rho), Delta V-p, Delta V-S) across the olivine-wadsleyite transition. Our models allow for several scenarios that can well reproduce the density and seismic velocity jumps across the 410-km discontinuity when compared to globally averaged seismic models. When the water content of olivine and wadsleyite is assumed to be equal as in a simple binary system, our modeling indicates a best fit for low water contents (<0.1 wt.%) with an olivine proportion of similar to 50%, suggesting a relatively dry, non-pyrolitic mantle at depths of the 410-km discontinuity. However, our modeling can be reconciled with a pyrolitic mantle if the water content in wadsleyite is similar to 0.9 wt.% and that in olivine is at its storage capacity of similar to 500-1500 ppm. The result would be consistent with a hydrous melt phase produced at depths just above the phase transition. (C) 2019 Elsevier B.V. All rights reserved.
机译:速度和密度跳过410公里的地震性不连续性,通常表示橄榄石含量与30至50体积相似的橄榄石含量,基于无水橄榄石和左散矿的弹性性质,这相当于与60%橄榄石相当少于相似的橄榄石广泛接受的上部地幔的热岩模型。对这种差异的可能解释是溶解在橄榄石和左散矿中的水以可以通过地震观察结果调和焦耳模型的方式影响它们的弹性性质。为了更完全限制在410公里的不连续附近的上部地幔的橄榄石含量,并在这种深度上放置对地幔水含量的限制,我们基于以下的不连续性的PT条件确定了含水Wadsley矿石的完全弹性。密度泛函理论计算。与以前的水对橄榄石弹性作用的测定一起,我们同时建模密度和地震速度跳跃(Delta(Rho),ΔV-P,δV-S),穿过橄榄石 - 瓦德斯矿石转变。与全球平均的地震模型相比,我们的模型允许几种情况下恢复跨越410公里的不连续性的密度和地震速度。当橄榄石和瓦德斯利石的含水量被认为是等于简单的二元体系时,我们的建模表明,对于低水分(<0.1重量%),具有与50%相似的橄榄石比例最适合干燥的非焦岩型壁龛,深度为410公里的不连续性。然而,如果氟钛矿中的水含量类似于0.9重量%,则我们的建模可以与吡咯性幔调和。%,并且在橄榄石中的储存能力与500-1500ppm相似。结果将与在相转变上方的深度产生的含水熔体相一致。 (c)2019 Elsevier B.v.保留所有权利。

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