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Thermodynamic and elastic properties of pyrope at high pressure and high temperature by first-principles calculations

机译:第一性原理计算高温和高温下的吡啶并合物的热力学和弹性性质

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Pyrope is an Mg end-member garnet, which constitutes up to similar to 15% of the upper mantle. Thermodynamic and thermoelastic properties of garnet at high pressure and high temperature are important for understanding the composition and structure of the Earth. Here we report the first-principles calculations of vibrational properties, thermodynamic properties, and elasticity of pyrope over a wide pressure and temperature range. The calculated results exhibit good consistency with the available experimental results and provide values up to the pressure and temperature range that are challenging for experiments to achieve and measure. Pyrope is almost isotropic at high pressure. The elastic moduli, especially the shear modulus of pyrope, exhibit nonlinear pressure and temperature dependences. Density and seismic velocities of pyrope along with piclogite, pyrolite, and eclogite are compared with seismic models along the normal upper mantle and the cold subducting lithospheric plate geotherms. Pyrope has the highest density and seismic velocities among the major minerals of the upper mantle along these geotherms. Eclogite with 30% pyrope and 70% clinopyroxene is denser than the surrounding mantle even along the normal upper mantle geotherm and becomes still denser along the cold slab geotherm. Seismic velocities of eclogite with 30% pyrope along the normal upper mantle geotherm are slower than the surrounding mantle but along the cold slab geotherm are faster than the surrounding mantle.
机译:Pyrope是一种镁末级石榴石,最多占上地幔的15%。石榴石在高温高压下的热力学和热弹性性质对于理解地球的组成和结构很重要。在这里,我们报告了在较宽的压力和温度范围内振动特性,热力学特性和伸缩弹性的第一性原理计算。计算结果与可用的实验结果显示出良好的一致性,并提供了压力和温度范围内的值,这些对于实验实现和测量都具有挑战性。在高压下,Pyrope几乎是各向同性的。弹性模量,尤其是焦度的剪切模量,表现出非线性的压力和温度依赖性。比较了火山岩以及pic石,黄铁矿和榴辉岩的密度和地震速度,以及沿正常上地幔和冷俯冲岩石圈板块地热的地震模型。在沿着这些地热的上地幔的主要矿物中,索普罗具有最高的密度和地震速度。即使在正常的上地幔地热中,具有30%的火山岩和70%的亚次氯环石的榴辉岩比周围的地幔更致密,而在冷平板地热线中仍然更致密。在正常的上地幔地热中,含30%焦岩的榴辉岩的地震速度比周围的地幔慢,但沿冷平板地热的地震速度比周围的地幔快。

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