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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 >Discrete characterization of abyssal hills: Unraveling temporal variations in crustal accretion processes at the 10 degrees 30 ' N segment, East Pacific Rise
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Discrete characterization of abyssal hills: Unraveling temporal variations in crustal accretion processes at the 10 degrees 30 ' N segment, East Pacific Rise

机译:深度升起,东太平洋崛起的离散特征:消费者山丘的分离特征:解开10度30'N段的地壳增散过程的时间变化

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摘要

The morphology of abyssal hills provides important information on the crustal accretion processes acting at mid ocean ridges. Discretely characterizing abyssal-hill shape is challenging, and therefore, the study of abyssal-hill morphology is often approached by examining the average properties of relatively wide regions containing multiple hills. However, this averaging process removes any spatial trends in abyssal-hill shape that may reflect temporal variations in crustal accretion processes. Here we present an automated approach for analyzing the shape of individual abyssal hills, which we detect using the ridgelet transform method of Downey and Clayton (2007). We first analyze seafloor morphologies, as revealed in multibeam bathymetry surveys, across 16 mid-ocean ridge segments with varying spreading rates. The results of this analysis display the known negative correlation between the width and height of abyssal hills and the spreading rate, thus validating our approach. Our results also show that the fraction of inward-facing abyssal hills exhibits a simple linear trend across all spreading rates, suggesting a property that could be used to determine the spreading rate at which the seafloor formed. We then apply our technique to study a flow line transect collected across the fast-spreading 10 degrees 30'N segment of the northern East Pacific Rise, revealing temporal changes in the shape of the abyssal hills formed during the last 3.8 Myr. The youngest part of the flow line coincides with a location where basaltic glasses were previously sampled. The abyssal-hill morphology and MgO content of the glass samples share mutual trends (over 10(5)-10(6) yrs), suggesting that abyssal-hill morphology is sensitive to the rate at which magma is supplied to the ridge axis. Finally, a similar to 1 Myr cyclic variation in seafloor morphology is observed. This periodicity is attributed to temporal changes in magma supply at the ridge axis, possibly related to upper mantle dy
机译:Abysal Hills的形态提供了关于在中海脊上作用的地壳吸收过程的重要信息。谨慎地表征Abysal-Hill形状是具有挑战性的,因此,通过检查含有多个山丘的相对宽区域的平均性质,通常接近对海洋山的形态的研究。然而,该平均过程消除了Abysal-Hill形状中的任何空间趋势,这可能反映了地壳增齿过程的时间变化。在这里,我们提出了一种自动化方法,用于分析各自的深渊山丘的形状,我们使用Downey和Clayton(2007)的ridgelet变换方法检测。我们首先分析海底形态,如多阵容沐浴般调查,横跨16个中海脊段,具有不同的扩散率。该分析结果显示了深度和展示率之间的宽度和高度与扩展速率之间的已知负相关,从而验证了我们的方法。我们的结果还表明,面向内侧的深度山丘的一部分在所有传播速率上表现出简单的线性趋势,这表明可以用于确定海底所形成的扩展速率的财产。然后,我们将我们的技术应用于在北太平洋北部的快速扩散10度30'N段中收集的流线横断面,揭示了在最后3.8 MYR期间形成的深海山丘形状的时间变化。流量线的最小部分与先前取样的玄武岩眼镜的位置一致。玻璃样品的eBysal-hill形态和MgO含量份额互相趋势(超过10(5) - 10(6)个YRS),表明Abysal-Hill形态对岩浆提供给脊轴的速率敏感。最后,观察到类似于海底形态的1个MYR循环变化。这种周期性归因于脊轴上的岩浆供应中的时间变化,可能与上部地幔Dy相关

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