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首页> 外文期刊>Contributions to Mineralogy and Petrology >The magmatic plumbing system beneath El Hierro (Canary Islands): constraints from phenocrysts and naturally quenched basaltic glasses in submarine rocks
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The magmatic plumbing system beneath El Hierro (Canary Islands): constraints from phenocrysts and naturally quenched basaltic glasses in submarine rocks

机译:El Hierro(加那利群岛)下方的岩浆管道系统:海底岩石中的隐晶岩和自然淬火的玄武岩玻璃构成的约束

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摘要

A thermobarometric and petrologic study of basanites erupted from young volcanic cones along the submarine portions of the three El Hierro rift zones (NE-Rift, NW-Rift and S-Ridge) has been performed to reconstruct magma plumbing and storage beneath the island. Mineral-melt thermobarometry applied to naturally quenched glass and clinopyroxene rims yields pressures ranging from 350 to 1070 MPa with about 80% of the calculated pressures being in the range of 600–800 MPa. This corresponds to a depth range of 19–26 km, implying that the main level of final crystal fractionation is within the uppermost mantle. No systematic dependence between sample locality and fractionation pressures could be observed. Olivine and clinopyroxene crystals in the rocks are complexly zoned and have, on an inter-sample as well as on an intra-sample scale, highly variable core and rim compositions. This can best be explained by mixing of multiply saturated (olivine, magnetite, clinopyroxene, ilmenite), moderately evolved magmas with more mafic magmas being either only saturated with olivine + spinel or with olivine + spinel + clinopyroxene. The inter-sample differences indicate derivation from small, isolated magma chambers which have undergone distinct fractionation and mixing histories. This is in contrast to oceanic intraplate volcanoes situated on plumes with high melt supply rates, e.g. Kilauea Volcano (Hawaii), where magma is mainly transported through a central conduit system and stored in a shallow magma chamber prior to injection into the rift zones. The plumbing system beneath El Hierro rather resembles the magma storage systems beneath, e.g. Madeira or La Palma, indicating that small, intermittent magma chambers might be a common feature of oceanic islands fed by plumes with relatively low fluxes, which results in only limited and periodic magma supply. Keywords El Hierro - Magma conduit structure - Barometry - Magma chambers Communicated by J. Hoefs.
机译:进行了三个El Hierro裂谷带(NE-Rift,NW-Rift和S-Ridge)海底部分新生火山锥喷出的玄武岩的热压和岩石学研究,以重建该岛下方的岩浆管道和存储。矿物熔体热压法应用于自然淬火的玻璃和斜向四边形轮辋,产生的压力范围为350至1070 MPa,其中约80%的计算压力在600-800 MPa的范围内。这对应于19-26 km的深度范围,这意味着最终晶体分级分离的主要水平在最上层地幔之内。没有观察到样品局部性和分馏压力之间的系统依赖性。岩石中的橄榄石和斜辉石晶体复杂地划分了区域,并且在样本间以及样本内尺度上,岩心和边缘的成分变化很大。最好用混合饱和(橄榄石,磁铁矿,斜辉石,钛铁矿),中度演化的岩浆与更多的镁铁矿岩浆混合,仅用橄榄石+尖晶石或橄榄石+尖晶石+斜辉石混合来解释。样本间的差异表明,它们是由小的,分离的岩浆室衍生而来的,这些室已经经历了不同的分馏和混合历史。这与位于具有高熔体供应率的羽状流上的大洋板内火山相反,例如。基拉韦厄火山(夏威夷),岩浆主要通过中央管道系统运输,并在注入裂谷带之前先储存在浅层岩浆室内。 El Hierro下面的管道系统与下面的岩浆存储系统非常相似,例如马德拉岛(Madeira)或拉帕尔玛岛(La Palma)指出,间歇性的岩浆小室可能是通量相对较低的羽流喂养的海洋岛屿的共同特征,这只会导致有限的周期性岩浆供应。关键字El Hierro-岩浆导管结构-气压-岩浆室,由J. Hoefs通讯。

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