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Heterogeneity and Anisotropy of Earth's Inner Core

机译:地球内核的异质性和各向异性

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Seismic observations provide strong evidence that Earth's inner core is anisotropic, with larger velocity in the polar than in the equatorial direction. The top 60-80 km of the inner core is isotropic; evidence for an innermost inner core is less compelling. The anisotropy is most likely due to alignment of hcp (hexagonal close-packed) iron crystals, aligned either during solidification or by deformation afterward. The existence of hemispherical variations used to be controversial, but there is now strong evidence from both seismic body wave and normalmode observations, showing stronger anisotropy, less attenuation, and a lower isotropic velocity in the western hemisphere. Two mechanisms have been proposed to explain the hemispherical pattern: either (a) inner core translation, wherein one hemisphere is melting and the other is solidifying, or (b) thermochemical convection in the outer core, leading to different solidification conditions at the inner core boundary. Neither is (yet) able to explain all seismically observed features, and a combination of different mechanisms is probably required.
机译:地震观测提供了有力的证据,证明地球的内核是各向异性的,极地速度比赤道方向大。内核的最高60-80 km是各向同性的;最内在核心的证据缺乏吸引力。各向异性最可能是由于hcp(六方密堆积)铁晶体的排列,在凝固过程中或之后的变形排列。半球变化的存在曾经引起争议,但是现在从地震体波和法向模式观测中都得到了强有力的证据,表明西半球的各向异性更强,衰减较小,各向同性速度较低。已经提出了两种机制来解释半球形模式:(a)内核平移,其中一个半球正在熔化而另一个半球正在凝固,或者(b)外核中的热化学对流,导致内核的凝固条件不同边界。 (至今)还不能解释所有地震观测到的特征,可能需要组合使用不同的机制。

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