首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Constraints on the deep thermal structure of the Dharwar craton, India, from heat flow, shear wave velocities, and mantle xenoliths
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Constraints on the deep thermal structure of the Dharwar craton, India, from heat flow, shear wave velocities, and mantle xenoliths

机译:热流,剪切波速度和地幔异岩对印度Dharwar克拉通深层热结构的限制

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摘要

We have used constraints from seismic shear wave vertical velocity profiles, geothermobarometry estimates on mantle xenoliths, and surface heat flux and heat production measurements to analyze the thermal regime of the deep lithosphere beneath India. In the Dharwar craton of southern India, the shear wave velocity gradient in the mantle, as well as xenolith geothermobarometry data, suggests a low mantle heat flux, 14-20 mW m~(-2), consistent with surface heat flux measurements. However, for standard cratonic mantle composition, seismic velocities require Moho and mantle temperatures to be about 300 K higher than inferred from heat flux and xenolith data. This discrepancy can be only resolved by changing the mantle composition, specifically by increasing the Fe number. The shear wave velocities are highest beneath north central India, where calculated S wave travel times are 2 s shorter than in the Dharwar craton. These differences in traveltime and the very steep gradient in the shear wave velocity profiles in north central India cannot be explained by variations in mantle temperature but require differences in mantle composition.
机译:我们已经使用了地震切变波垂直速度剖面,地幔异岩的地热气压估算以及地表热通量和产热测量的约束条件来分析印度下方深层岩石圈的热力状况。在印度南部的Dharwar克拉通中,地幔中的剪切波速度梯度以及异岩体地热气压计数据表明,地幔热通量较低,为14-20 mW m〜(-2),与表面热通量测量结果一致。但是,对于标准的克拉通地幔组成,地震速度要求莫霍面和地幔温度要比根据热通量和异种岩数据推断的温度高约300K。这种差异只能通过改变地幔成分来解决,特别是通过增加铁含量来解决。在印度中北部以下,剪切波速度最高,在那里计算出的S波传播时间比Dharwar克拉通短2 s。印度北部中部的传播时间差异和剪切波速度剖面中非常陡峭的坡度无法通过地幔温度的变化来解释,但需要地幔成分的差异。

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