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Role of syn-eruptive plagioclase disequilibrium crystallization in basaltic magma ascent dynamics

机译:增生斜长石不平衡结晶在玄武岩浆上升动力学中的作用

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摘要

Timescales of magma ascent in conduit models are typically assumed to be much longer than crystallization and gas exsolution for basaltic eruptions. However, it is now recognized that basaltic magmas may rise fast enough for disequilibrium processes to play a key role on the ascent dynamics. The quantification of the characteristic times for crystallization and exsolution processes are fundamental to our understanding of such disequilibria and ascent dynamics. Here we use observations from Mount Etna's 2001 eruption and a magma ascent model to constrain timescales for crystallization and exsolution processes. Our results show that plagioclase reaches equilibrium in 1–2 h, whereas ascent times were <1 h. Using these new constraints on disequilibrium plagioclase crystallization we also reproduce observed crystal abundances for different basaltic eruptions. The strong relation between magma ascent rate and disequilibrium crystallization and exsolution plays a key role in controlling eruption dynamics in basaltic volcanism.
机译:通常认为,管道模型中岩浆上升的时间尺度比玄武岩爆发的结晶和气体析出要长得多。但是,现在已经认识到,玄武岩浆可能上升得足够快,以使不平衡过程在上升动力中发挥关键作用。结晶和析出过程的特征时间的量化是我们理解这种失衡和上升动力学的基础。在这里,我们使用埃特纳火山2001年喷发的观测资料和岩浆上升模型来约束结晶和析出过程的时间尺度。我们的结果表明斜长石在1-2 h达到平衡,而上升时间<1

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