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Magmatic and amagmatic seafloor generation at the ultraslow-spreading Gakkel ridge, Arctic Ocean

机译:北冰洋超慢扩展的加克尔山脊上的岩浆和岩浆海底生成

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摘要

A high-resolution mapping and sampling study of the Gakkel ridge was accomplished during an international ice-breaker expedition to the high Arctic and North Pole in summer 2001. For this slowest-spreading endmember of the global mid-ocean-ridge system, predictions were that magmatism should progressively diminish as the spreading rate decreases along the ridge, and that hydrothermal activity should be rare. Instead, it was found that magmatic variations are irregular, and that hydrothermal activity is abundant. A 300-kilometre-long central amagmatic zone, where mantle peridotites are emplaced directly in the ridge axis, lies between abundant, continuous volcanism in the west, and large, widely spaced volcanic centres in the east. These observations demonstrate that the extent of mantle melting is not a simple function of spreading rate: mantle temperatures at depth or mantle chemistry (or both) must vary significantly along-axis. Highly punctuated volcanism in the absence of ridge offsets suggests that first-order ridge segmentation is controlled by mantle processes of melting and melt segregation. The strong focusing of magmatic activity coupled with faulting may account for the unexpectedly high levels of hydrothermal activity observed.
机译:在2001年夏季对北极和北极高空进行的国际破冰船探险期间,完成了对Gakkel脊的高分辨率制图和取样研究。对于全球海脊中脊扩散最慢的最终成员,随着沿山脊的扩散速率降低,岩浆作用应逐渐减少,并且热液活动应该很少。相反,发现岩浆变化是不规则的,并且热液活动丰富。一个300公里长的中央岩浆带,地幔橄榄岩直接位于山脊轴线上,位于西部丰富而连续的火山活动与东部大而宽阔的火山中心之间。这些观察结果表明,地幔融化的程度不是扩散速度的简单函数:深部的地幔温度或地幔化学成分(或两者)必须沿轴向变化很大。在没有山脊偏移的情况下,高度点状的火山活动表明,一阶山脊分段受融化和熔体分离的地幔过程控制。岩浆活动的强烈集中以及断层可能解释了观察到的高水平的水热活动。

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