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首页> 外文期刊>Contributions to Mineralogy and Petrology >Efficiency of compaction and compositional convection during mafic crystal mush solidification: the Sept lies layered intrusion, Canada
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Efficiency of compaction and compositional convection during mafic crystal mush solidification: the Sept lies layered intrusion, Canada

机译:镁铁质晶体糊状凝固过程中的压实和成分对流效率:9月位于分层侵入,加拿大

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摘要

Adcumulate formation in mafic layered intrusions is attributed either to gravity-driven compaction, which expels the intercumulus melt out of the crystal matrix, or to compositional convection, which maintains the intercumulus liquid at a constant composition through liquid exchange with the main magma body. These processes are length-scale and time-scale dependent, and application of experimentally derived theoretical formulations to magma chambers is not straightforward. New data from the Sept lies layered intrusion are presented and constrain the relative efficiency of these processes during solidification of the mafic crystal mush. Troctolites with meso- to ortho-cumulate texture are stratigraphically followed by Fe-Ti oxide-bearing gabbros with adcumulate texture.
机译:镁铁质层状侵入体中的堆积形成归因于重力驱动的压实作用,该作用将堆积间的熔体从晶体基体中排出,或者归因于对流,其通过与岩浆主体的液体交换将堆积间的液体保持在恒定的组成下。这些过程取决于长度尺度和时间尺度,并且将实验得出的理论公式应用于岩浆室并非易事。呈现了来自9月谎言的新数据,即层状侵入,并限制了镁铁矿晶体糊状物凝固过程中这些过程的相对效率。地层上具有中等至原状堆积的托槽岩,其次是具有堆积状纹理的含铁钛氧化物的辉长岩。

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