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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Global 1 degrees x 1 degrees thermal model TC1 for the continental lithosphere: Implications for lithosphere secular evolution
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Global 1 degrees x 1 degrees thermal model TC1 for the continental lithosphere: Implications for lithosphere secular evolution

机译:大陆岩石圈的整体1度x 1度热力模型TC1:对岩石圈长期演化的影响

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摘要

This paper reports anew 1 degrees x 1 degrees global thermal model for the continental lithosphere (TC1). Geotherms for continental terranes of different ages (> 3.6 Ga to present) constrained by reliable data on borehole heat flow measurements (Artemieva, I.M., Mooney, WD. 2001. Thermal structure and evolution of Precambrian lithosphere: a global study. J. Geophys. Res 106, 16387-16414.), are statistically analyzed as a function of age and are used to estimate lithospheric temperatures in continental regions with no or low-quality heat flow data (ca. 60% of the continents). These data are supplemented by cratonic geotherms based on electromagnetic and xenolith data; the latter indicate the existence of Archean cratons with two characteristic thicknesses, ca. 200 and > 250 km. A map of tectono-thermal ages of lithospheric terranes complied for the continents on a 1 degrees x 1 degrees grid and combined with the statistical age relationship of continental geotherms (z=0.04 * t+93.6, where z is lithospheric thermal thickness in km and t is age in Ma) formed the basis for a new global thermal model of the continental lithosphere (TC1). The TC1 model is presented by a set of maps, which show significant thermal heterogeneity within continental upper mantle, with the strongest lateral temperature variations (as large as 800 degrees C) in the shallow mantle. A map of the depth to a 550 T isotherm (Curie isotherm for magnetite) in continental upper mantle is presented as a proxy to the thickness of the magnetic crust; the same map provides a rough estimate of elastic thickness of old (> 200 Ma) continental lithosphere, in which flexural rigidity is dominated by olivine rheology of the mantle.
机译:本文报告了大陆岩石圈(TC1)的新的1度x 1度全局热模型。不同年龄(> 3.6 Ga到目前)大陆地层的地热受井眼热流测量的可靠数据(Artemieva,IM,Mooney,WD。2001)的约束。前寒武纪岩石圈的热结构和演化:全球研究,J。Geophys。 Res 106,16387-16414。)作为年龄的函数进行了统计分析,用于估计没有或只有低质量热流数据(大约60%的大陆)的大陆地区的岩石圈温度。这些数据由基于电磁和异岩体数据的克拉通地热补充。后者表明存在两个特征厚度的太古宙克拉通。 200公里和250公里以上。在1度x 1度网格上针对各大陆绘制的岩石圈地壳构造热年龄图,并与大陆地热的统计年龄关系相结合(z = 0.04 * t + 93.6,其中z是岩石圈热厚度,单位为km和t是Ma的年龄)构成了新的大陆岩石圈全球热力模型(TC1)的基础。 TC1模型由一组图表示,这些图显示了大陆上地幔内部明显的热非均质性,浅地幔中的横向温度变化最大(高达800摄氏度)。给出了大陆上地幔到550 T等温线(磁铁矿的居里等温线)的深度图,作为地壳厚度的代表。同一张图粗略估计了旧大陆岩石圈(> 200 Ma)的弹性厚度,其中弯曲刚度受地幔橄榄石流变学控制。

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