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首页> 外文期刊>Pure and Applied Geophysics >Importance of the Decompensative Correction of the Gravity Field for Study of the Upper Crust: Application to the Arabian Plate and Surroundings
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Importance of the Decompensative Correction of the Gravity Field for Study of the Upper Crust: Application to the Arabian Plate and Surroundings

机译:重力场的去补偿校正对上地壳研究的重要性:在阿拉伯板块和周围环境中的应用

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摘要

The isostatic correction represents one of the most useful "geological" reduction methods of the gravity field. With this correction it is possible to remove a significant part of the effect of deep density heterogeneity, which dominates in the Bouguer gravity anomalies. However, even this reduction does not show the full gravity effect of unknown anomalies in the upper crust since their impact is substantially reduced by the isostatic compensation. We analyze a so-called decompensative correction of the isostatic anomalies, which provides a possibility to separate these effects. It was demonstrated that this correction is very significant at the mid-range wavelengths and may exceed 100 m/s(2) (mGal), therefore ignoring this effect would lead to wrong conclusions about the upper crust structure. At the same time, the decompensative correction is very sensitive to the compensation depth and effective elastic thickness of the lithosphere. Therefore, these parameters should be properly determined based on other studies. Based on this technique, we estimate the decompensative correction for the Arabian plate and surrounding regions. The amplitude of the decompensative anomalies reaches +/- 250 m/s(2) 10(-5) (mGal), evidencing for both, large density anomalies of the upper crust (including sediments) and strong isostatic disturbances of the lithosphere. These results improve the knowledge about the crustal structure in the Middle East.
机译:等静压校正代表了重力场最有用的“地质”折减方法之一。通过这种校正,可以消除深密度非均质性的影响的很大一部分,这种非均质性在布格引力异常中占主导地位。然而,即使这种减少也没有显示出上地壳中未知异常的全部重力效应,因为它们的影响通过等静压补偿大大减少。我们分析了所谓的等静压异常的去代偿校正,这提供了分离这些效应的可能性。结果表明,这种校正在中等波长下非常重要,可能超过100 m/s(2) (mGal),因此忽略这种效应将导致关于上地壳结构的错误结论。同时,去补偿校正对岩石圈的补偿深度和有效弹性厚度非常敏感。因此,这些参数应根据其他研究正确确定。基于这种技术,我们估计了阿拉伯板块及周边地区的去代偿校正。失代偿异常的振幅达到+/- 250 m/s(2) 10(-5) (mGal),证明了上地壳(包括沉积物)的大密度异常和岩石圈的强等静压扰动。这些结果提高了对中东地壳结构的认识。

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