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 >Estimate of inner core rotation rate from United Kingdom regional seismic network data and consequences for inner core dynamical behaviour
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Estimate of inner core rotation rate from United Kingdom regional seismic network data and consequences for inner core dynamical behaviour

机译:根据英国区域地震网络数据估算内核旋转速率及其对内核动力学行为的影响

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We analyse over 12 500 records of southwest Pacific earthquakes recorded by the UK network for PKP_(BC) and PKP_(DF) phases to seek constraints on the inner core's rotation rate. Careful analysis and strict rejection criteria yield 655 PKP_(BC)-PKP_(DF) differential travel time residuals computed with respect to the AK135 reference model, densely sampling a small region of the inner core over a time period of 15 years. The data images both lateral and radial velocity heterogeneity in the inner core located geographically beneath the north Pacific between radii of 870 and 1080 km. The dominant feature is a longitudinal wave speed gradient centred at about 180°longitude. In combination with different earthquake catalogues and inner core anisotropy models, we explore different techniques to use this gradient to constrain the rotation rate. Our estimates rage from 0.45 ± 0.25 to 0.74 ± 0.29°/yr relative to the mantle, with two of four estimates including zero rotation at the 95% (2σ) confidence level, indicating that rotation is marginally detectable. As an alternative to monotonic rotation, we find weak evidence for rotational oscillation of the inner core on time scales of about 280 days. In consequence, these observations suggest that: (1) viscous coupling between the outer and inner core simulated using viscous hyperdiffusivity is not appropriate for modelling inner core rotation; (2) temperature gradients between the interior and exterior of the tangent cylinder in the core are also small; (3) gravitational torques coupling the inner core to the mantle are large, on the order of 2 * 10~(21) Nm; and (4) the inner core's viscosity is high, 3.9 * 10~(19) Pas.
机译:我们分析了由英国网络记录的PKP_(BC)和PKP_(DF)阶段的超过12 500例西南太平洋地震记录,以寻求对内核旋转速率的约束。仔细的分析和严格的拒绝标准得出了相对于AK135参考模型计算出的655 PKP_(BC)-PKP_(DF)差动行程时间残差,在15年的时间内密集地对一小部分内核进行了采样。数据反映了位于北太平洋地理上地理半径在870和1080 km之间的内芯的横向和径向速度异质性。主要特征是以大约180度经度为中心的纵向波速梯度。结合不同的地震目录和内芯各向异性模型,我们探索了不同的技术来使用该梯度来限制旋转速率。我们的估算值相对于地幔为0.45±0.25至0.74±0.29°/ yr / yr,其中四个估算值中的两个包括置信度为95%(2σ)时的零旋转,表明该旋转是微不足道的。作为单调旋转的替代方法,我们发现在大约280天的时间范围内,内芯旋转振荡的证据不充分。结果,这些观察结果表明:(1)使用粘性超扩散性模拟的内外核之间的粘滞耦合不适用于模拟内核旋转; (2)芯中切线圆柱体内部和外部之间的温度梯度也很小; (3)将内芯与地幔耦合的重力很大,约为2 * 10〜(21)Nm。 (4)内芯的粘度高,为3.9×10〜(19)Pa·s。

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