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首页> 外文期刊>Contributions to Mineralogy and Petrology >Experimental studies of the P–T–H2O near-liquidus phase relations of basaltic andesite from North Sister Volcano, High Oregon Cascades: constraints on lower-crustal mineral assemblages
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Experimental studies of the P–T–H2O near-liquidus phase relations of basaltic andesite from North Sister Volcano, High Oregon Cascades: constraints on lower-crustal mineral assemblages

机译:俄勒冈北部高姐妹瀑布北姐妹火山玄武质安山岩P–T–H 2 O近液相线相关系的实验研究:对下地壳矿物组合的约束

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摘要

We have mapped the mineralogy onto the H2O-undersaturated liquidus surface of basaltic andesite from North Sister Volcano to constrain the crystalline assemblage with which, and P–T–H2O conditions at which, the melt last equilibrated before erupting. Combining our high pressure experimental results with examples of tectonically exposed lower arc crust, geophysical constraints, trace element geochemistry, and melt inclusion volatile contents, we conclude that an anhydrous, augite-rich gabbro at ∼12 kbar and ∼1,175°C is the most probable lithology with which North Sister basaltic andesite with ∼3.5 wt% H2O last equilibrated before erupting. We speculate that reaction between this gabbro and primitive mantle-derived precursor melts buffered the compositions of magmas erupted from this volcano resulting in their remarkably limited compositional range.
机译:我们将矿物学映射到了来自北姐妹火山的玄武岩安山岩的H 2 O-不饱和液相线表面,以约束与其形成的结晶组合以及P–T–H 2 在这样的条件下,熔体在喷出前最后达到平衡。将我们的高压实验结果与构造暴露的下部弧壳,地球物理约束,微量元素地球化学和熔体夹杂物挥发物含量相结合,我们得出结论,在约12 kbar和约1,175°C的温度下,无水富辉石辉长岩是最可能的岩性,在喷发前最后一次平衡了具有约3.5 wt%H 2 O的North Sister玄武质安山岩。我们推测这种辉长岩与原始地幔衍生的前体熔体之间的反应缓冲了从该火山喷发而来的岩浆的成分,从而导致其组成范围极为有限。

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