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弧火山位置的全球系统学。

Global systematics of arc volcano position.

机构信息

Department of Earth Sciences, Parks Road, Oxford OX1 3PR, UK.

出版信息

Nature. 2010 Dec 9;468(7325):E6-7; discussion E7-8. doi: 10.1038/nature09154.

Abstract

Global systematics in the location of volcanic arcs above subduction zones are widely considered to be a clue to the melting processes that occur at depth, and the locations of the arcs have often been explained in terms of the release of hydrous fluids near the top of the subducting slab (see, for example, refs 3-6). Grove et al. conclude that arc volcano location is controlled by melting in the mantle at temperatures above the water-saturated upper-mantle solidus and below the upper limit of stability of the mineral chlorite and in particular, that the arc fronts lie directly above the shallowest point of such melt regions in the mantle. Here we show that this conclusion is incorrect because the calculated arc locations of Grove et al. are in error owing to the inadequate spatial resolution of their numerical models, and because the agreement that they find between predicted and observed systematics arises from a spurious correlation between calculated arc location and slab dip. A more informative conclusion to draw from their experiments is that the limits of chlorite stability (figure 1b of ref. 7) cannot explain the global systematics in the depth to the slab beneath the sharply localized arc fronts.

摘要

全球俯冲带上方火山弧的位置普遍被认为是深部熔融过程的线索,而弧的位置通常可以用俯冲板块顶部附近含水流体的释放来解释(例如,参见参考文献 3-6)。Grove 等人得出结论,弧火山的位置是由地幔中温度高于水饱和上地幔固相线、低于绿泥石稳定上限的熔融控制的,特别是弧前缘直接位于地幔中此类熔融区域的最浅点之上。在这里,我们表明,由于他们的数值模型空间分辨率不足,以及他们发现的预测和观察到的系统之间的一致性来自于计算出的弧位置和板块倾斜之间的虚假相关性,因此这个结论是不正确的。从他们的实验中得出的一个更有意义的结论是,绿泥石稳定性的极限(参考文献 7 的图 1b)不能解释在尖锐局部化的弧前缘下方的板块深度的全球系统。

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