澳大利亚的最大磁化深度,它的不确定性,以及对居里深度的影响

GeoResJ Pub Date : 2015-09-01 DOI:10.1016/j.grj.2015.06.003
Richard Chopping , Brian L.N. Kennett
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引用次数: 28

摘要

居里深度是地壳和最上层地幔由于地热效应的作用而不再具有铁磁性或铁磁性的深度。铁磁性是地壳磁性的主要原因。估计澳大利亚居里深度的一种方法是绘制由磁场强度观测得出的磁化基础图。我们利用非线性直接抽样反演技术,对磁化分形正演模型的参数空间进行了充分的探索。这产生了一系列模型,使我们能够绘制出澳大利亚最大磁化深度及其不确定性的地图。整个大陆的磁化基础差异很大,深度在10到70公里之间,不确定性为7到10公里。磁化深度的变化符合地质省的边界,因为它们的磁性不同:一般来说,克拉通和更古老的省通常显示出更深的磁化结果基础,因此可以推断出更深的居里深度,反映了这些地区总体上更冷。我们还发现我们的结果与已知的地热异常基本一致。
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Maximum depth of magnetisation of Australia, its uncertainty, and implications for Curie depth

The Curie depth is the depth at which the crust and uppermost mantle cease to be ferromagnetic or ferromagnetic, the main cause of crustal magnetism, due to the action of geothermal effects. One method to estimate the Curie depth for Australia is to map the base of magnetisation derived from observations of magnetic intensity. We have used a nonlinear direct sampling inverse technique to fully explore the parameter space of a fractal forward model of magnetisation. This produces an ensemble of models that allow us to produce maps of both the maximum depth of magnetisation and its uncertainty for Australia. The base of magnetisation varies significantly across the continent, between 10 and 70 km depth, with an uncertainty of 7–10 km. The variations in magnetisation depth conform with the boundaries of geological provinces due to their differing magnetic properties: In general, cratons and older provinces generally show a deeper base of magnetisation results and hence may be inferred to have deeper Curie depths, reflecting that these areas are on the whole cooler. We also find general agreement in our results with known geothermal anomalies.

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