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Evidence for a differentiated crust in Solis Planum, Mars, from lithosphericudstrength and heat flow

机译:来自岩石圈 ud的火星Solis Planum地壳差异化的证据强度和热流

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摘要

Two independent sets of heat flow estimates provide constraints on the Hesperian-era surface and mantle heat flows, and the thickness of the heat-producing elements (HPE)-enriched upper crust, in the Solis Planum region of Mars. The calculations, which use the concentration of uppermost crust heat sources deduced from orbital gamma ray spectroscopy and soils geochemistry, are based on the effective elastic thickness of the lithosphere and the minimum depth of faults underlying winkle ridges. We find that, for the majority of analyzed settings, the HPE-enriched crust is thinner than the whole crust thickness in this region (∼65 km). Thus, our results strongly support a differentiated martian crust.
机译:在火星的Solis Planum地区,两组独立的热流估算值对Hesperian时代的表面和地幔热流以及富集了生热元素(HPE)的上地壳的厚度提供了限制。该计算使用的是从轨道伽马射线能谱和土壤地球化学中推导出的最上层地壳热源的浓度,其计算基于岩石圈的有效弹性厚度和成皱纹脊下面的最小断层深度。我们发现,对于大多数分析设置,富含HPE的地壳比该区域(约65 km)的整个地壳厚度薄。因此,我们的结果有力地支持了分化的火星地壳。

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