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Correlations between oceanic crustal thickness, melt volume, and spreading rate from global gravity observation

机译:来自全球重力观察的海洋地壳厚度,熔体体积和扩散率之间的相关性

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摘要

Oceanic crustal accretion at mid-ocean ridges is a function of spreading rate, mantle temperature, and composition, which are intertwined in affecting melt production and oceanic crustal thickness. Sparse and irregular seismic and geochemical observations on a global scale showed no correlation between crustal thickness and spreading rate along slow to fast-spreading centers. Here, we compile a global oceanic crustal thickness model from gravity data to revisit this issue at a high resolution. Gravity-observed melt volume shows a positive correlation with spreading rate globally, implying that spreading rate is the dominant factor in melt production. However, oceanic crustal thickness is negatively correlated with spreading rate from slow to fast-spreading centers, and this trend is further consolidated by the increase in Curie point depth (a geothermal proxy) and ridge depth with increasing spreading rate. Thus, a decreasing near-ridge temperature probably contributes to crustal thinning from slow to fast-spreading centers. Inferred low melt volume anomalies beneath fast-spreading centers are consistent with a 20 °C temperature drop in the near-ridge mantle, likely caused by efficient hydrothermal cooling.
机译:海洋脊上的海洋地壳吸收是散布速率,披风温度和组成的函数,它们在影响熔体生产和海洋地壳厚度方面交织在一起。全球规模的稀疏和不规则地震和地球化学观测显示出壳厚度与速度速度较慢的地壳厚度和扩散速率之间的相关性。在这里,我们将全球海洋地壳厚度模型从重力数据编制,以高分辨率重新审视该问题。重力观察到的熔体体积显示出与全球扩散速率的正相关,这意味着扩散率是熔融生产中的主要因素。然而,海洋地壳厚度与从速度扩展中心的速度较慢的扩散速度呈负相关,并且这种趋势通过居里点深度(地热代理)和脊深度的增加而进一步巩固,随着扩散速度的增加。因此,降低近脊温度可能有助于从缓慢到快速扩展中心的地壳稀释。推断的低熔体体积异常在快速扩频中心下方与近脊幔滴在20°C的温度下降一致,可能是由有效的水热冷却引起的。

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  • 来源
    《Oceanographic Literature Review》 |2020年第10期|2185-2185|共1页
  • 作者单位

    Institute of Marine Geology and Resources Zhejiang University Zhoushan China;

    Institute of Marine Geology and Resources Zhejiang University Zhoushan China;

    Institute of Marine Geology and Resources Zhejiang University Zhoushan China;

    Institute of Marine Geology and Resources Zhejiang University Zhoushan China;

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