Численное моделирование поведения энстатита до 1.4 TPa

К. К. Маевский
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Abstract

An accurate description of the effect of extreme pressure and temperature on the physical properties of materials is required to understand the structure and composition of the mantle of the Earth and similar planets. One of such materials is enstatite MgSiO3, which causes increased interest in the investigating of its behavior under intense dynamic loads. It is proposed to consider the shock-wave loading of enstatite as a mixture of quartz oxides SiO2 and MgO periclase in an equal stoichiometric ratio based on experimental data in which decomposition of magnesium silicates was observed. Calculations are performed using a thermodynamically equilibrium model that takes into account the phase transitions of the components. Phase transitions of SiO2 and MgO are taken into account when modeling high-energy effects on enstatite. The results are compared with the data obtained on the basis of shock-wave loading experiments, as well as with calculations based on the PREM model performed based on the results of seismic exploration.
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要了解地球和类似行星的地幔的结构和组成,就需要准确地描述极端压力和温度对物质物理性质的影响。其中一种材料是顽火辉石MgSiO3,这引起了人们对其在强烈动态载荷下的行为的研究兴趣。根据观察到的硅酸镁分解的实验数据,提出将长辉石的冲击波载荷视为石英氧化物SiO2和MgO方长石的混合物,其化学计量比相等。计算是使用热力学平衡模型进行的,该模型考虑了组分的相变。在模拟高温顽辉石的高能效应时,考虑了SiO2和MgO的相变。将计算结果与冲击波加载实验数据进行了比较,并与基于地震勘探结果的PREM模型计算结果进行了比较。
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