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The Poisson ratio of the Australian crust: geological and geophysical implications

机译:澳大利亚地壳的泊松比:地质和地球物理意义

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摘要

The Poisson ratio, which depends on the V_P/V_S ratio, provides much tighter constraints on the crustal composition than either the compressional or the shear velocity alone. The crustal Poisson ratio can be determined from the joint analysis of the travel times of waves converted at the Moho and of crustal multiples reflected at the top of the Moho. We have analyzed the records of the permanent stations installed on the Australian continent, complemented by the data of the SKIPPY experiment. The results reveal substantial variations in the Poisson ratio in the different tectonic units. For the Proterozoic crust, an increase of the Poisson ratio with increasing crustal thickness is systematically observed while for the Phanerozoic crust, the Poisson ratio tends to decrease for increasing crustal thicknesses. These observations are in remarkable agreement with the results of the deep seismic soundings that were performed in the former Soviet Union. The variations observed in the Proterozoic provinces can perhaps be explained by underplating of mafic materials at the base of the crust.
机译:泊松比取决于V_P / V_S比率,它对地壳成分的约束比单独的压缩速度或剪切速度要严格得多。地泊泊松比可以通过对在莫霍面转换的波和在莫霍面顶部反射的地壳倍数的传播时间的联合分析来确定。我们分析了澳大利亚大陆上安装的永久性站点的记录,并结合了SKIPPY实验数据。结果表明,不同构造单元的泊松比有很大变化。对于元古代地壳,系统观察到泊松比随地壳厚度的增加而增加,而对于准生代地壳,泊松比倾向于随地壳厚度的增加而降低。这些观察结果与前苏联进行的深层地震测深的结果非常吻合。在元古代地区观察到的变化也许可以用地壳底部镁铁质物质的下铺来解释。

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