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首页> 外文期刊>Geophysical Research Letters >Abundant hydrothermal venting along melt-rich and melt-free ridge segments in the Lau back-arc basin
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Abundant hydrothermal venting along melt-rich and melt-free ridge segments in the Lau back-arc basin

机译:劳后弧盆地富熔融和无熔融脊段上大量的热液排放

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The relationship between the spatial density of hydrothermal venting (p(h)) and spreading rate ( us) is undefined along back-arc ridges. Here we report a continuous survey of hydrothermal plumes along the similar to 400-km-long Eastern Lau Spreading Center. The mean p(h)/u(s) ratio for each of three tectonic segments followed the global midocean ridge trend, with p(h) doubling as us increased northward from 39 to 96 mm/yr. However, we found little correlation between p(h) and the previously imaged distribution of axial melt lenses, which are near-continuous along the southern two segments but wholly absent along the northernmost segment. We infer that venting on the southern segments is melt driven, whereas venting on the northern ELSC is entirely powered with heat extracted by deep circulation through hot rock. This segment may be a rare example of an entire fast-spreading segment where hydrothermal convection cells are powered by downward-migrating cracking fronts.
机译:沿弧后脊,热液喷发的空间密度(p(h))和扩散速率(us)之间的关系是不确定的。在这里,我们报告了沿着类似于400公里长的东劳斯传播中心的热液羽流的连续调查。三个构造段中每一个的平均p(h)/ u(s)比率遵循全球中洋海脊趋势,随着我们向北从39 mm / yr向北增加,p(h)增加了一倍。但是,我们发现p(h)与先前成像的轴向熔融透镜分布之间几乎没有相关性,轴向熔融透镜在南部的两个部分几乎是连续的,而在最北部的部分则完全不存在。我们推断,南部部分的通风是由熔体驱动的,而北部ELSC的通风完全是由热岩石深层循环所提取的热量来驱动的。此段可能是整个快速扩展段的罕见示例,在该段中,热液对流单元由向下迁移的裂变前沿驱动。

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