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Andesites as Magmatic Liquids or Liquid-crystal Mixtures; Insights from Egmont and Ruapehu Volcanoes, New Zealand Research Article

机译:安山岩岩浆液或液晶混合物;埃格蒙特和鲁阿佩胡火山的见解,新西兰研究文章

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Late Quaternary andesitic magmas in New Zealand contain complexly zoned antecrysts and glomerocrysts that are not in equilibrium with either the host whole rock compositions or siliceous groundmass glass and glass inclusions. Glass inclusions represent partial melts of mafic to gabbroic cumulates in the lower crust that mix with restite crystals, or cumulates from earlier magma batches. Assimilation of partial melts of mid-crustal rocks, represented by glass in crustal xenoliths, contributes a crustal component to the andesites. Magmas at Egmont are stored at about the brittle/ductile transition at about 10 km depth and variability in the composition of erupted material is a function of the composition of the recharging magma, and which parts of the storage system are tapped during the eruption. At Taranaki recharge occurs on a c. 1400 year cycle while interactions within the storage give rise to shorter period events. A similar process on a less well constrained timescale operates at Ruapehu. Andesites are therefore complex mixtures of fractionated mantle basalts, siliceous partial melts of both the lower crust and underplated cumulates, restite and cumulate crystals. Further modification occurs by interaction with partial melts of lower to middle crustal basement as geotherms increase with time.
机译:新西兰晚第四纪的安山岩浆含有复杂的带状前岩和成球岩,它们与宿主的整体岩石成分或含硅质的地基玻璃和玻璃夹杂物都不平衡。玻璃夹杂物代表下地壳中铁铁矿到辉长岩的部分熔体,这些熔体与钙钛矿晶体混合,或者来自较早的岩浆批次。以地壳异岩中的玻璃为代表的中地壳岩石的部分熔体的同化,为安山岩提供了地壳成分。埃格蒙特的岩浆大约在10 km深度处以脆性/延性转变的形式存储,喷发物质成分的变化是补给岩浆成分的函数,并且在喷发过程中会抽出存储系统的哪些部分。在塔拉纳基(Taranaki),充电发生在c上。 1400年的周期,而存储中的交互产生了较短时间的事件。鲁阿佩胡(Ruapehu)在时间限制较小的情况下进行了类似的处理。因此,安山岩是分馏地幔玄武岩,下地壳和底盘堆积的硅质部分熔体,再结晶和累积晶体的复杂混合物。随着地热随着时间的增加,通过与较低至中地壳基底的部分熔体的相互作用发生进一步的变化。

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