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Seismic tomography beneath stable tectonic regions and the origin and composition of the continental lithospheric mantle

机译:稳定构造区域下的地震层析成像以及岩石圈地幔的起源和组成

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On a large scale, seismic waves travel faster through old continental shields than through Paleozoic platforms. On a smaller scale, the continental lithosphere appears to be composed of blocks with different velocities. Sharp vertical contacts between different blocks of lithosphere are revealed by short-wavelength offsets in P-vertical travel times: some contacts have been preserved for more than one billion years. These observations cannot be explained by temperature differences alone and imply persistent mineralogical differences within the lithosphere. To reconcile global and local seismological observations, a bimodal model is required: the continental lithosphere appears to consist of cores of depleted, refractory lithosphere surrounded by and/or superposed on younger, more fertile lithosphere. The seismic characteristics and mineralogical compositions correlate on a large scale with the age of the lithosphere and reflect episodic growth of the continents. Temperatures in the lithosphere of stable continental regions vary less than commonly assumed and may be close to the geotherms proposed by Jaupart and Mareschal [Lithos 48 (1999) 93-114].
机译:在大范围内,地震波通过旧大陆板的传播要比通过古生代平台传播的快。在较小的规模上,大陆岩石圈似乎由具有不同速度的块体组成。 P垂直行进时间中的短波长偏移显示出岩石圈不同块之间的尖锐垂直接触:某些接触已保存了十亿多年。这些观察结果不能仅凭温度差异来解释,而不能暗示岩石圈内存在持久的矿物学差异。为了调和全球和局部地震学观测结果,需要一个双峰模型:大陆岩石圈似乎由贫乏,难熔岩石圈的核心组成,这些核心被较年轻,肥沃的岩石圈包围和/或叠置。地震特征和矿物组成与岩石圈的年龄有很大的联系,反映了大陆的间歇性增长。稳定大陆区岩石圈的温度变化比通常假设的要少,并且可能接近Jaupart和Mareschal提出的地热[Lithos 48(1999)93-114]。

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