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Pressure-volume-temperature equation of state of MgSiO3 perovskite from molecular dynamics and constraints on lower mantle composition

机译:从分子动力学和对下地幔组成的约束出发,MgSiO3钙钛矿的压力-体积-温度方程

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The composition of the lower mantle can be investigated by examining densities and seismic velocities of compositional models as functions of depth. In order to do this it is necessary to know the volumes and thermoelastic properties of the compositional constituents under lower mantle conditions. We determined the thermal equation of state (EOS) of MgSiO3 perovskite using the nonempirical variational induced breathing (VIB) interatomic potential with molecular dynamics simulations at pressures and temperatures of the lower mantle. We fit our pressure-volume-temperature results to a thermal EOS of the form P(V,T) = P-0(V,T-0) + DeltaP(th)(T), where T-0 = 300 K and P-0 is the isothermal Universal EOS. The thermal pressure DeltaP(th) can be represented by a linear relationship DeltaP(th) = a + bT. We find V-0 = 165.40 Angstrom (3), K-T0 = 273 GPa, K-T0' = 3.86, a = -1.99 GPa, and b = 0.00664 GPa K-1 for pressures of 0-140 GPa and temperatures of 300-3000 K. By fixing V-0 to the experimentally determined value of 162.49 Angstrom (3) and calculating density and bulk sound velocity profiles along a lower mantle geotherm we find that the lower mantle cannot consist solely of (Mg,Fe)SiO3 perovskite with X-Mg ranging from 0.9-1.0. Using pyrolitic compositions of 67 vol % perovskite (X-Mg = 0.93-0.96) and 33 vol % magnesiowustite (X-Mg 0.82-0.86), however, we obtained density and velocity profiles that are;in excellent agreement with seismological models for a reasonable geotherm. [References: 86]
机译:下地幔的组成可以通过检查组成模型的密度和地震速度作为深度的函数来研究。为此,必须知道在较低地幔条件下组成成分的体积和热弹性性质。我们使用在下部地幔的压力和温度下进行的分子动力学模拟,使用非经验性的变异诱导呼吸(VIB)原子间电势,确定了MgSiO3钙钛矿的状态热方程(EOS)。我们将压力-体积-温度结果拟合为形式为P(V,T)= P-0(V,T-0)+ DeltaP(th)(T)的热EOS,其中T-0 = 300 K和P-0是等温通用EOS。热压DeltaP(th)可以由线性关系DeltaP(th)= a + bT表示。我们发现V-0 = 165.40埃(3),K-T0 = 273 GPa,K-T0'= 3.86,a = -1.99 GPa,b = 0.00664 GPa K-1对于0-140 GPa的压力和温度300-3000K。通过将V-0固定为实验确定的162.49埃(3)的值并计算下地幔地热的密度和体声速剖面,我们发现下地幔不能仅由(Mg,Fe)SiO3组成钙钛矿的X-Mg为0.9-1.0。但是,使用67%(体积)钙钛矿(X-Mg = 0.93-0.96)和33%(体积)菱镁矿(X-Mg 0.82-0.86)的热解组成,我们得到的密度和速度剖面与地震模型非常吻合。合理的地热。 [参考:86]

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