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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >The combined effects of water and fluorine on the viscosity of silicic magmas
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The combined effects of water and fluorine on the viscosity of silicic magmas

机译:水和氟对硅质岩浆粘度的联合作用

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The Newtonian viscosity of water-plus-fluorine-bearing silicate melt of haplogranitic composition (HPG8) has been determined. Viscosities of HPG8 melt with addition of 3.11 and 4.25 wt.% of F and up to 3 wt.% H2O have been obtained using a micropenetration technique in the interval 10(9.74) to 10(11.84) Pa (.) s and temperatures varying from 370 to 700degreesC, at ambient pressure. Determination of the temperature dependence of viscosity from this and previous studies permits the parameterization of the viscosity of melts containing water and fluorine, having similar composition. within a 0.3 log units standard error. The viscosity of water-bearing, F-rich haplogranitic samples is represented by a modified Vogel-Fulcher-Tammann (VFT) equation which provides a non-Arrhenian description of the temperature dependence of the viscosity. The results of this study indicate that. taken individually or together. both H2O and F- have a strong and similar effect on the viscosity of SiO2-rich compositions. This similarity between F2O-1 and H2O greatly simplifies the task of predicting viscosity for volatile-rich. highly silicic magmas. The low viscosities of hydrous fluorine-bearing granitic melts favour efficient crystallization-fractionaction paths for these liquids. controlling degassing paths and consequently the eruptive behaviour. Numerical simulations of eruptive events normally do not take into account the contribution of fluorine: this may introduce a significant error in the description of the fluid-dynamic properties of magma and, therefore, in the accurate prediction of eruptive scenarios, as well as in hazard assessment studies. Fluorine, unlike water. remains dissolved in the melt at high concentrations and low confining pressures. The incorporation of fluorine data and the modelling of fluorine-bearing viscosity data are therefore of fundamental importance for simulations of magma dynamics and prediction of eruptive scenarios. Copyright (C) 2004 Elsevier Ltd.
机译:确定了触变花岗岩成分的水加氟硅酸盐熔体的牛顿粘度(HPG8)。使用微渗透技术,在10(9.74)到10(11.84)Pa(。)s的区间内,随着温度的变化,添加了3.11和4.25 wt。%的F和最多3 wt。%的H2O的HPG8熔体的粘度已获得。在环境压力下从370到700摄氏度。通过该研究和先前的研究确定粘度对温度的依赖性,可以对组成相似的包含水和氟的熔体的粘度进行参数化。在0.3 log个单位的标准误差内。含水的,富含F的触木质样品的粘度由改进的Vogel-Fulcher-Tammann(VFT)方程表示,该方程提供了粘度的温度依赖性的非阿里尼亚描述。这项研究的结果表明。单独或一起服用。 H2O和F-对富含SiO2的组合物的粘度都有很强的相似影响。 F2O-1和H2O之间的相似性极大地简化了预测富含挥发物的粘度的任务。高硅质岩浆。含水含氟花岗岩熔体的低粘度有利于这些液体的有效结晶-分馏路径。控制脱气路径,从而控制喷发行为。喷发事件的数值模拟通常不考虑氟的贡献:这可能会在描述岩浆的流体动力学特性以及因此在准确预测喷发情况以及危害方面引入重大错误。评估研究。氟,不同于水。残留物以高浓度和低围压在熔体中溶解。因此,氟数据的合并和含氟粘度数据的建模对于岩浆动力学的模拟和喷发情景的预测至关重要。版权所有(C)2004 Elsevier Ltd.

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