Estimative of the gravity-gradient data from vertical component of gravitational attraction by using the equivalent-layer and fast Fourier transform techniques

Larissa S. Piauilino, V. Barbosa, Vanderlei Olivera Jr
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引用次数: 1

Abstract

We present a comparison between the computing of gravity gradient tensor components from the vertical component of the gravitational attraction using the fast Fourier transform and the equivalent-layer techniques. In this comparison, we consider that the observed data consist of: (1) the residual gravity field (produced by local sources) and (2) the overlapping of regional and residual gravity fields. Applications to synthetic data show that the fast Fourier transform technique amplifies the noise to calculate the six components of the tensor. Comparing the FFT and the equivalent-layer results with the true gravity gradient components produced by local source without regional gravity field, the equivalent-layer result yields a better result because it shows a smaller residual. However, when the observed data have a regional gravity field overlapped to the residual gravity field both techniques yield unacceptable results, indicating the need of new methodologies to deal with regional field.
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利用等效层和快速傅里叶变换技术从重力垂直分量估计重力梯度数据
我们比较了利用快速傅立叶变换和等效层技术从重力引力的垂直分量计算重力梯度张量分量的方法。在这次对比中,我们认为观测数据包括:(1)局部源产生的剩余重力场和(2)区域和剩余重力场的重叠。对合成数据的应用表明,快速傅里叶变换技术可以放大噪声来计算张量的六个分量。将FFT和等效层结果与局部源无区域重力场产生的真实重力梯度分量进行比较,等效层结果显示出较小的残差,结果较好。然而,当观测资料中存在区域重力场与剩余重力场重叠时,这两种方法的结果都令人难以接受,这表明需要新的方法来处理区域重力场。
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