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 >High-pressure single-crystal elasticity of wadsleyite and the seismic signature of water in the shallow transition zone
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High-pressure single-crystal elasticity of wadsleyite and the seismic signature of water in the shallow transition zone

机译:瓦德利石的高压单晶弹性和浅层过渡区水中的地震签名

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摘要

Earth's transition zone at depths between 410 km and 660 km plays a key role in Earth's deep water cycle since large amounts of hydrogen can be stored in the nominally anhydrous minerals wadsleyite and ringwoodite, (Mg,Fe)(2)SiO4. Previous mineral physics experiments on iron-free wadsleyite proposed low seismic velocities as an indicative feature for hydration in the transition zone. Here we report simultaneous sound wave velocity and density measurements on iron-bearing wadsleyite single crystals with 0.24 wt-% H2O. By comparison with earlier studies, we show that pressure suppresses the velocity reduction caused by higher degrees of hydration in iron-bearing wadsleyite, ultimately leading to a velocity cross-over for both P-waves and S-waves. Modeling based on our experimental results shows that wave speed variations within the transition zone as well as velocity jumps at the 410-km seismic discontinuity, both of which have been used in previous work to detect mantle hydration, are poor water sensors. Instead, the impedance contrast across the 410-km seismic discontinuity that is reduced in the presence of water can serve as a more robust indicator for hydrated parts of the transition zone. (C) 2018 Elsevier B.V. All rights reserved.
机译:地球的过渡区深度在410公里和660公里之间在地球的深水循环中起着关键作用,因为大量的氢气可以储存在名义上无水矿物质疏水矿石和英诺石(Mg,Fe)(2)SiO4中。以前的矿物质物理实验在无铁瓦德斯利,提出了低地震速度作为过渡区中水合的指示特征。在这里,我们报告了含铁的杂散单晶的同时声波速度和密度测量,具有0.24重量%的H2O。通过与早期研究进行比较,我们表明压力抑制了轴承瓦德利石中较高的水化程度引起的速度降低,最终导致对P波和S波的速度交叉。基于我们的实验结果的建模表明,过渡区内的波速变化以及在410 km地震中不连续的速度跳跃,这两者都是在先前的工作中用于检测搭式水合的工作,是差的水传感器。相反,在水存在下减少的410 km地震性不连续性的阻抗对比可以用作过渡区的水合部分的更稳健的指示。 (c)2018年elestvier b.v.保留所有权利。

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