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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >A textural and geochemical investigation of the high level gabbros from the oman ophiolite: implications for the role of the axial magma chamber at fast-spreading ridges
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A textural and geochemical investigation of the high level gabbros from the oman ophiolite: implications for the role of the axial magma chamber at fast-spreading ridges

机译:阿曼蛇绿岩中高辉长辉岩的组织结构和地球化学研究:对轴向伸展的岩浆室在快速扩散的山脊中的作用的影响

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摘要

Geophysical studies at fast-spreading ridges have identified a magma sill at, or slightly below, the base of the sheeted dyke complex. The role of this sill, the so-called axial magma chamber (AMC), in mid-ocean ridge basalt (MORB) differentiation and lower crustal accretion at fast-spreading ridges is unclear. Using the Oman ophiolite as an analogue for crust formed at a fast-spreading ridge, we investigate the composition of magmas delivered to the AMC using the compositions and textures of samples from the uppermost plutonics immediately below the sheeted dyke complex. The cores of clinopyroxene crystals are commonly as primitive as those found in deeper parts of the crust. This is true for major (Mg), compatible trace (Cr) and incompatible trace (REEs) elements. Plagioclase crystal size distributions are ln-linear at all but the smallest crystal sizes suggesting a single crystal population. This indicates that the primitive crystal compositions are not carried to the AMC as xenocrysts formed deeper in the crust. Instead, these data demonstrate that primitive magmas that have previously undergone little or no differentiation can be delivered to the AMC. This supports models in which crystal subsidence from this body plays an important role in the accretion of the lower crust.
机译:在快速扩张的山脊上进行的地球物理研究已经确定了在成片的堤防复合体底部或稍下方的岩浆基岩。目前尚不清楚这种基岩(所谓的轴向岩浆腔(AMC))在中海脊玄武岩(MORB)分化和快速扩展海脊下部地壳增生中的作用。使用阿曼蛇绿岩作为在快速扩张的山脊上形成的地壳的类似物,我们使用薄片状堤坝复合体正下方的最上层岩体的样品组成和质地,研究了输送到AMC的岩浆的组成。斜辉石晶体的核通常与地壳深部的核一样原始。对于主要(Mg),兼容迹线(Cr)和不兼容迹线(REEs)元素都是如此。斜长石晶体的大小分布几乎都是线性的,但最小的晶体大小表明存在单个晶体。这表明原始的晶体成分没有被带入AMC,因为异种晶在地壳中形成得更深。取而代之的是,这些数据表明,以前几乎没有分化或没有分化的原始岩浆可以输送到AMC。这支持了这样的模型,其中来自该物体的晶体沉降在下地壳的积聚中起着重要的作用。

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