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High-Pressure Geoscience Special Feature: Topology of the postperovskite phase transition and mantle dynamics

机译:高压地球科学专题:钙钛矿后相变和地幔动力学的拓扑

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摘要

The postperovskite (ppv) phase transition occurs in the deep mantle close to the core–mantle boundary (CMB). For this reason, we must include in the dynamical considerations both the Clapeyron slope and the temperature intercept, Tint, which is the temperature of the phase transition at the CMB pressure. For a CMB temperature greater than Tint, there is a double crossing of the phase boundary by the geotherms associated with the descending flow. We have found a great sensitivity of the shape of the ppv surface due to the CMB from variations of various parameters such as the amount of internal heating, the Clapeyron slope, and the temperature intercept. Three-dimensional spherical models of mantle convection that can satisfy the seismological constraints depend on the Clapeyron slope. At moderate value, 8 MPa/K, the best fit is found with a core heat flow amounting for 40% of the total heat budget (≈15 TW), whereas for 10 MPa/K the agreement is for a lower core heat flow (20%, ≈7.5 TW). In all cases, these solutions correspond to a temperature intercept 200 K lower than the CMB temperature. These models have holes of perovskite adjacent to ppv in regions of hot upwellings.
机译:钙钛矿后(ppv)相变发生在靠近地幔边界(CMB)的深地幔中。因此,我们必须在动力学考虑中同时考虑Clapeyron斜率和温度截距Tint,Tint是CMB压力下的相变温度。对于高于Tint的CMB温度,相界会被与下降流相关的地热双重穿过。我们发现,由于CMB引起的ppv表面形状的高度敏感性,是由各种参数(例如内部加热量,Clapeyron斜率和温度截距)的变化引起的。可以满足地震约束的地幔对流的三维球形模型取决于克拉珀隆斜率。在中等值8 MPa / K时,发现堆芯热流占总热量预算的40%(≈15TW)时是最佳拟合,而对于10 MPa / K,协议则是较低的堆芯热流( 20%,≈7.5TW)。在所有情况下,这些解决方案都对应于比CMB温度低200 K的温度截距。这些模型在热上升区中的ppv附近有钙钛矿孔。

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