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Tomography of core-mantle boundary and lowermost mantle coupled by geodynamics

机译:地幔层析和最低地幔的层析成像与地球动力学耦合

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摘要

We propose an innovative approach to mapping CMB topography from seismic P-wave traveltime inversions: instead of treating mantle velocity and CMB topography as independent parameters, as has been done so far, we account for their coupling by mantle flow, as formulated by Forte & Peltier. This approach rests on the assumption that P data are sufficiently sensitive to thermal heterogeneity, and that compositional heterogeneity, albeit important in localized regions of the mantle (e.g. within the D″ region), is not sufficiently strong to govern the pattern of mantle-wide convection and hence the CMB topography. The resulting tomographic maps of CMB topography are physically sound, and they resolve the known discrepancy between images obtained from classic tomography on the basis of core-reflected and core-refracted seismic phases. Since the coefficients of mantle velocity structure are the only free parameters of the inversion, this joint tomography-geodynamics approach reduces the number of parameters; nevertheless the corresponding mantle models fit the seismic data as well as the purely seismic ones
机译:我们提出了一种创新的方法来从地震P波传播时间反演中绘制CMB地形图:与迄今为止所做的那样,不是将地幔速度和CMB地形视为独立的参数,而是考虑了地幔流的耦合作用,这是由Forte&珀尔帖。该方法基于以下假设:P数据对热非均质性足够敏感,并且成分非均质性(尽管在地幔的局部区域(例如,D''区域内)很重要)不足以控制整个地幔的模式对流以及CMB地形。生成的CMB地形断层图在物理上是合理的,并且它们根据岩心反射和岩心折射地震相,解决了从经典层析成像获得的图像之间的已知差异。由于地幔速度结构的系数是反演的唯一自由参数,因此这种联合层析X线地球动力学方法减少了参数的数量。尽管如此,相应的地幔模型也能拟合地震数据和纯地震数据

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