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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Rapid 3-D forward model of potential fields with applicationto the Palinuro Seamount magnetic anomaly (southern Tyrrhenian Sea, Italy)
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Rapid 3-D forward model of potential fields with applicationto the Palinuro Seamount magnetic anomaly (southern Tyrrhenian Sea, Italy)

机译:势场的快速3-D正向模型及其在Palinuro Seamount磁异常中的应用(意大利第勒尼安海)

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摘要

We show a set of forward model equations in the Fourier domain for calculating the3-D gravity and magnetic anomalies of a given 3-D distribution of density or magnetization. One property of the potential field equations is that they are given by convolution products, providing a very simple analytic expression in the Fourier domain. Under this assumption, the domain of the density or magnetization parameters is connected by a biunivoc relationship with the data space, and potential field anomalies can be seen as filtered versions of the corresponding density or magnetization distributions. A very fine spatial discretization can be obtained by using a large number of points within a unique 3-D grid, where both the source distributions and field data are defined. The main advantage of this formulation is that it dramatically reduces execution times, providing a very fast forward model tool useful for modeling anomalies at different altitudes. We use this method to evaluate an average magnetization of 8 Alm for the Palinuro Seamount in the Tyrrhenian Sea (southern Italy), thus performing a joint interpretation of morphological and newly acquired magnetic data.
机译:我们在傅立叶域中显示了一组正向模型方程,用于计算给定3D密度或磁化强度分布的3D重力和磁异常。势场方程的一个特性是它们由卷积积给出,从而在傅立叶域中提供了非常简单的解析表达式。在此假设下,密度或磁化参数的域通过双向关系与数据空间相连,并且势场异常可以看作是相应密度或磁化分布的滤波形式。通过在唯一的3-D网格中使用大量点可以获得非常精细的空间离散化,其中定义了源分布和现场数据。这种公式化的主要优点是它大大减少了执行时间,提供了非常快的模型工具,可用于对不同高度的异常进行建模。我们使用这种方法来评估第勒尼安海(意大利南部)的Palinuro海山的平均8 Alm磁化强度,从而对形态学数据和新获得的磁数据进行联合解释。

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