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Density Patterns of the Upper Mantle Under Asia and the Arctic: Comparison of Thermodynamic Modelling and Geophysical Data

机译:亚洲和北极地区上部地幔的密度图案:热力学建模和地球物理数据的比较

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Based on the modified thermodynamic model, we calculate the density of olivine-pyroxene mixtures at different proportions of molecular masses in minerals at temperatures of 1000-1700 K and pressures up to 17 GPa. The calculated density of the olivine-pyroxene mixtures is compared with the PREM model and the average density patterns of the Asian and Arctic regions estimated from the data on the Rayleigh wave group velocity dispersion in upper mantle conditions. Taking into account the characteristic temperature profiles of different tectonic units in Asia (Tibetan plateau, Khangay dome, Baikal rift and southern Siberian Platform) and the Arctic (Chukotka fold belt, Barents Sea, northern Greenland and Eurasia Basin), we discuss density patterns and features of the mantle composition underneath structures and to depths of 200 km, where the most significant variations in their density patterns are observed. The results obtained suggest some insights into the geodynamic evolution of the lithosphere in the study area. The calculated density characteristics of the components in the upper mantle and the modelling of their composition are compared with average density patterns under the tectonic units, in order to show the possibilities of previously developed equations of state. It has been shown that the composition (0.9(Mg0.9Fe0.1)(2)SiO4 + 0.1MgSiO(3)) describes the PREM model well, in addition to the average velocity patterns of the study regions. Variations in mineralogical compositions are revealed between stable structures and the areas with high levels of tectonic and seismic activity. The present paper could be of interest to geophysicists and mineralogists as it researches overlapping topics for both sciences, indicating the relationship between seismicity and features of the deep structure of the upper mantle.
机译:基于改进的热力学模型,我们计算在1000-1700k温度的矿物质中不同比例的不同比例的橄榄石 - 辉石混合物的密度,高达17GPa的压力。将计算出的橄榄石 - 辉石混合物的密度与从上部地幔条件下瑞利波群速度分散的数据估计的亚洲和北极区域的平均密度图案进行比较。考虑到亚洲不同构造单元的特征温度曲线(藏高高原,khangay圆顶,百吉河裂谷和南部西伯利亚平台)和北极(Chukotka Fold Belt,Marents Sea,Northern Greenland和Eurasia Basin),我们讨论了密度模式和结构下方的地幔组成和深度为200 km的特征,其中观察到密度模式的最显着变化。得到的结果表明,研究区岩石圈的地磁演变有些见解。将上部地幔中的组分的计算密度特性与构造单元下的平均密度图案进行比较,以显示先前显得的状态方程的可能性。已经表明,除了研究区域的平均速度模式之外,组合物(0.9(mg0.9fe0.1)(2)SiO 4 + 0.1mgsio(3))还描述了预型型号。矿物学组合物的变化显示在稳定的结构和具有高水平和地震活动的区域之间。本文对地球物学家和矿物学家来说,本文可能感兴趣,因为它研究了两种科学的重叠主题,表明了上部地幔深层结构的地震性和特征之间的关系。

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