首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Array-Based IterativeMeasurements of SmKS Travel Times and Their Constraints on Outermost Core Structure
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Array-Based IterativeMeasurements of SmKS Travel Times and Their Constraints on Outermost Core Structure

机译:基于阵列的SMK旅行时间的ITERATIVEMESEREMETEMEREMEREMET及其对最外核结构的约束

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摘要

Vigorous convection in Earth's outer core led to the suggestion that it is chemically homogeneous. However, there is increasing seismic evidence for structural complexities close to the outer core's upper and lower boundaries. Both body waves and normal mode data have been used to estimate a P wave velocity, Vp, at the top of the outer core (the E' layer), which is lower than that in the Preliminary Reference Earth Model. However, these low Vp models do not agree on the form of this velocity anomaly. One reason for this is the difficulty in retrieving and measuring SmKS arrival times. To address this issue, we propose a novel approach using data from seismic arrays to iteratively measure SmKS-SKKS differential travel times. This approach extracts individual SmKS signal from mixed waveforms of the SmKS series, allowing us to reliably measure differential travel times. We successfully use this method to measure SmKS time delays from earthquakes in the Fiji-Tonga and Vanuatu subduction zones. SmKS time delays are measured by waveform cross correlation between SmKS and SKKS, and the cross-correlation coefficient allows us to access measurement quality. We also apply this iterative scheme to synthetic SmKS seismograms to investigate the 3-D mantle structure's effects. The mantle structure corrections are not negligible for our data, and neglecting them could bias the Vp estimation of uppermost outer core. After mantle structure corrections, we can still see substantial time delays of S3KS, S4KS, and S5KS, supporting a low Vp at the top of Earth's outer core.
机译:地球外部核心的剧烈对流导致了它在化学上均匀的建议。然而,由于靠近外核心核心和下边界的结构复杂性,增加了地震证据。身体波和正常模式数据都已被用于估计外核顶部的P波速度Vp(E'层),其低于初步参考地球模型中的e'层)。但是,这些低VP模型不同意这种速度异常的形式。其中一个原因是难以检索和测量SMK到达时间。为了解决这个问题,我们提出了一种新的方法,使用来自地震阵列的数据来迭代地测量SMK-SKKS差动行驶时间。该方法从SMK系列的混合波形中提取各个SMK信号,允许我们可靠地测量差动行程时间。我们成功地使用这种方法来测量斐济汤加和瓦努阿图俯冲区域地震的SMK时间延迟。 SMK时间延迟通过SMK和SKKS之间的波形交叉相关来测量,并且互相关系数允许我们访问测量质量。我们还将这种迭代方案应用于合成的SMK地震图,以研究3-D Mantle结构的影响。对于我们的数据而言,地幔结构校正并不可忽略不可规定,并且忽略它们可能偏置最上面的外核的VP估计。在地幔结构校正之后,我们仍然可以看到S3KS,S4KS和S5K的大量时间延迟,支持地球外核顶部的低VP。

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