首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Seismic parameters of hcp-Fe alloyed with Ni and Si in the Earth's inner core
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Seismic parameters of hcp-Fe alloyed with Ni and Si in the Earth's inner core

机译:地心内与镍和硅合金化的六价铁的抗震参数

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Iron alloyed with Ni and Si has been suggested to be a major component of the Earth's inner core. High-pressure results on the combined alloying effects of Ni and Si on seismic parameters of iron are thus essential for establishing satisfactory geophysical and geochemical models of the region. Here we have investigated the compressional (V-P) and shear (Vs) wave velocity-density () relations, Poisson's ratio (), and seismic heterogeneity ratios (dln/dlnV(P), dln/dlnV(S), and dlnV(P)/dlnV(S)) of hcp-Fe and hcp-Fe86.8Ni8.6Si4.6 alloy up to 206GPa and 136GPa, respectively, using multiple complementary techniques. Compared with the literature velocity values for hcp-Fe and Fe-Ni-Si alloys, our results show that the combined addition of 9.0wt% Ni and 2.3wt% Si slightly increases the V-P but significantly decreases the V-S of hcp-Fe at a given density relevant to the inner core. Such distinct alloying effects on velocities of hcp-Fe produce a high of about 0.40 for the alloy at inner core densities, which is approximately 20% higher than that for hcp-Fe. Analysis of the literature high P-T results on V-P and V-S of Fe alloyed with light elements shows that high temperature can further enhance the of hcp-Fe alloyed with Ni and Si. Most significantly, the derived seismic heterogeneity ratios of this hcp alloy present a better match with global seismic observations. Our results provide a multifactored geophysical constraint on the compositional model of the inner core which is consistent with silicon being a major light element alloyed with Fe and 5wt% Ni.
机译:与镍和硅合金化的铁被认为是地球内核的主要成分。因此,有关Ni和Si对铁的地震参数的综合合金作用的高压结果对于建立令人满意的该地区的地球物理和地球化学模型至关重要。在这里,我们研究了压缩波(VP)和剪切波(Vs)的波速-密度()关系,泊松比()和地震非均质比(dln / dlnV(P),dln / dlnV(S)和dlnV(P使用多种互补技术分别将高达206GPa和136GPa的hcp-Fe和hcp-Fe86.8Ni8.6Si4.6合金的dlnV(S))。与文献报道的hcp-Fe和Fe-Ni-Si合金的速度值相比,我们的结果表明9.0wt%Ni和2.3wt%Si的组合添加会稍微增加VP,但显着降低hcp-Fe的VS。给定的密​​度与内芯有关。这种对hcp-Fe速度的明显合金作用在内芯密度下对合金产生约0.40的高值,这比hcp-Fe的合金高约20%。对文献中有关轻元素合金的Fe的V-P和V-S的高P-T结果的分析表明,高温可以进一步增强与Ni和Si合金形成的hcp-Fe的合金化。最重要的是,这种hcp合金的推导地震异质比与全球地震观测值更加匹配。我们的结果对内核的组成模型提供了多因素地球物理约束,这与硅是与Fe和5wt%Ni合金化的主要轻元素一致。

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