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Experimental constraints on permeable gas transport in crystalline silicic magmas

机译:晶体硅质岩浆中渗透性气体传输的实验约束

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摘要

The gas and fluid transport in magmas via permeable flow through interconnected bubble networks controls the rate of outgassing from magmas ascending in volcanic conduits and the fluid transport in the mushy boundary layer of magma reservoirs. Hence, clarifying its mechanism and rate is crucial to understanding the explo-sivity of volcanic eruptions and the evolution and dynamics of a magma reservoir. Recent experimental studies have determined the gas permeabilities in crystal-free rhyolite and basalt. However, no experimental study has investigated the effect of the crystal contents on the permeable gas transport in magmas. In this study, we performed decompression experiments for hydrous rhyolitic melts having crystallinities of 30 and 50 vol% to examine the effect of crystals on the bubble microstructure and gas permeability during magma vesiculation. Size-controlled
机译:岩浆中的气体和流体通过相互连接的气泡网络的渗透流传输,控制了火山岩在火山管道中上升的放气速率以及岩浆储层的糊状边界层中的流体传输。因此,弄清其机制和速率对于了解火山喷发的爆炸性以及岩浆储层的演化和动力学至关重要。最近的实验研究确定了无晶体流纹岩和玄武岩中的气体渗透率。但是,没有实验研究研究晶体含量对岩浆中可渗透气体传输的影响。在这项研究中,我们对结晶度分别为30和50%(体积)的含水流纹岩熔体进行了减压实验,以研究晶体对岩浆囊泡化过程中气泡微观结构和气体渗透性的影响。尺寸控制

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