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Downward continuation of airborne gravity data by means of the change of boundary approach

机译:通过边界方法的变化向下继续延续空气传播重力数据

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Abstract Within the modelling of gravity data, a common practice is the upward/downward continuation of the signal, i.e. the process of continuing the gravitational signal in the vertical direction away or closer?to the sources, respectively. The gravity field, being a potential field, satisfies the Laplace’s equation outside the masses and this means that it allows to unambiguously perform this analytical continuation only in a source-free domain. The analytical continuation problem has been solved both in the space and spectral domains by exploiting different algorithms. As well known, the downward continuation operator, differently from the upward one, is an unstable operator, due to its spectral characteristics similar to those of a high-pass filter, and several regularization methods have been proposed in order to stabilize it. In this work, an iterative procedure to downward/upward continue the gravity field observations, acquired at different altitudes, is proposed. This methodology is based on the change of boundary principle and it has been expressively thought for aerogravimetric observations for geophysical exploration purposes. Within this field of application, usually several simplifications can be applied, basically due to the specific characteristics of the airborne surveys which are usually flown at almost constant altitude as close as possible to the terrain. For instance, these characteristics, as shown in the present work, allow to perform the downward continuation without the need of any regularization. The goodness of the proposed methodology has been evaluated by means of a numerical test on real data, acquired in the South of Australia. The test shows that it is possible to move the aerogravimetric data, acquired along tracks with a maximum height difference of about 250?m, with accuracies of the order of 10 $$^{-3}$$ - 3 ?mGal.
机译:摘要在重力数据的建模中,常见的做法是信号向上/向下延续,即继续将重力信号在垂直方向上或更近的过程中的过程。作为潜在场的重力场满足了群众之外的LAPLACE的等式,这意味着它允许毫不含糊地在无源域中执行该分析延续。通过利用不同的算法来解决空间和光谱域中的分析延续问题。众所周知,由于其频谱特性与高通滤波器类似的光谱特性,并且已经提出了几种正则化方法,以若干正则化方法是不稳定的操作员。在这项工作中,提出了一种迭代过程,向下/向上继续在不同海拔地区获得的重力场观测。该方法基于边界原理的变化,并且已经表达地思考地球物理勘探目的的空气呕血观测。在该应用领域中,通常可以应用几种简化,基本上是由于空气传播调查的特定特性,这通常在几乎恒定的高度处靠近地形而靠近地形。例如,如本工作所示,这些特性允许在不需要任何正则化的情况下执行向下的延续。通过在澳大利亚南部获得的真实数据的数值测试评估了所提出的方法的良好。该测试表明,可以移动空气提升数据,沿着最大高度差的轨道获取约250Ωm,其精度为10 $$ ^ { - 3} $$ - 3?mgal。

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