首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Localization of geoid anomalies and the evolution of oceanic lithosphere: A case study from the Mendocino Fracture Zone
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Localization of geoid anomalies and the evolution of oceanic lithosphere: A case study from the Mendocino Fracture Zone

机译:大地水准面异常的定位和海洋岩石圈的演化:以门多西诺断裂带为例

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摘要

The thermal evolution of oceanic lithosphere is investigated by focusing on geoid offsets occurring across the Mendocino Fracture Zone, where plates with different ages are juxtaposed. Various processing techniques have been devoted to separate the geoid signal of the age contrast from regional and shorter wavelength components unrelated to the thermal structure of lithosphere. Nevertheless, due to processing differences, estimates of geoid offsets vary, and no agreement on the thermal evolution of oceanic lithosphere has been found so far. In this study, we propose to use a continuous wavelet analysis to accurately characterize the components of the geoid at different spatial scales and to estimate a new geoid slope-age relationship from localized signals. We also apply the same wavelet transform on a set of synthetic geoid calculated with different assumptions on plate cooling. The comparison of the observed geoid offsets with those predicted from cooling models indicates that our approach can successfully remove unwanted regional contributions and isolate the geoid signature due to lithospheric cooling. Our results suggest that, contrary to previous studies, geoid slopes measured at the Mendocino Fracture Zone are compatible with both the half-space cooling model and the plate model.
机译:通过关注整个门多西诺断裂带上出现的大地水准面偏移来研究海洋岩石圈的热演化,在该区中并置了不同年龄的板块。已经致力于各种处理技术来将年龄对比的大地水准面信号与与岩石圈的热结构无关的区域和较短的波长分量分开。然而,由于处理上的差异,大地水准面偏移的估计值也有所不同,到目前为止,尚未发现有关海洋岩石圈热演化的共识。在这项研究中,我们建议使用连续小波分析来准确表征不同空间尺度上大地水准面的分量,并从局部信号估计新的大地水准面坡度与年龄的关系。我们还将相同的小波变换应用于在不同板冷条件下计算的一组合成大地水准面。将观测到的大地水准面偏移与从冷却模型预测的大地水准面偏移进行比较表明,我们的方法可以成功地去除不必要的区域影响,并由于岩石圈冷却而隔离大地水准面特征。我们的结果表明,与以前的研究相反,在门多西诺断裂带测得的大地水准面坡度与半空间冷却模型和板状模型均兼容。

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