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Thermodynamic and rheological properties of rhyolite and andesite melts

机译:流纹岩和安山岩的热力学和流变学特性融化

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摘要

The heat capacities of a rhyolite and an andesite glass and liquid have been investigated from relative-enthalpy measurements made between 400 and 1800 K. For the glass phases, the experimental data agree with empirical models of calculation of the heat capacity. For the liquid phases, the agreement is less good owing to strong interactions between alkali metals and aluminum, which are not currently accounted for by empirical heat capacity models. The viscosity of both liquids has been measured from the glass transition to 1800 K. The temperature dependence of the viscosity is quantitatively related to the configurational heat capacity (determined calorimetrically) through the configurational entropy theory of relaxation processes. For both rhyolite and andesite melts, the heat capacity and viscosity do not differ markedly from those obtained by additive modeling from components with mineral compositions.
机译:通过在400至1800 K之间进行的相对焓测量,研究了流纹岩,安山岩玻璃和液体的热容量。对于玻璃相,实验数据与计算热容量的经验模型相符。对于液相而言,由于碱金属和铝之间的强烈相互作用而导致的一致性较差,而经验热容量模型目前尚无法解决这些问题。两种液体的粘度已从玻璃化转变温度到1800 K进行了测量。通过松弛过程的结构熵理论,粘度的温度依赖性与结构热容(量热确定)定量相关。对于流纹岩和安山岩熔体,其热容量和粘度与具有矿物成分的组件通过加性建模获得的热容量和黏度没有明显差异。

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