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February 21, 2026Lobachevskii Journal of Mathematics0 citations

Computational Algorithm for Downward Continuation of Gravity Anomalies

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DID. K. IvanovLTL. N. TemirbekovaPVP. N. Vabishchevich

Key Points

  • This work aims to develop a computational algorithm for the downward continuation of gravity anomalies.
  • Utilizes first-kind integral equations for downward continuation.
  • Implements regularization techniques to stabilize the process.
  • Represents the continued field through a simple layer's potential.
  • Applies non-negative least squares to ensure density constraints.
  • Successfully preserves the sign of gravity anomalies through the simple layer approach.
  • Demonstrated efficiency of the algorithm on various model examples.
  • Ensured that the layer’s density remains non-negative while enclosing all anomalies.

Abstract

The downward continuation of potential fields from the Earth’s surface into the subsurface is a critical task in gravity exploration, as it helps to identify the sources of gravity anomalies. This problem is often addressed by solving a first-kind integral equation using regularization techniques to stabilize an inherently unstable process. A similar approach is used in our work, where the continued field is represented as the potential of a simple layer or its vertical derivative. The constancy of the density sign of this equivalent simple layer preserves the sign of anomalies, provided that the layer’s surface encloses all anomalous sources. This constraint is a key feature of our algorithm for the downward continuation of potential fields. To enforce, for instance, non-negativity in the simple layer density, we employ the NNLS (Non-Negative Least Squares) method. The efficiency of the proposed method is demonstrated on model examples.

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Cite This Study

Ivanov et al. (2025) studied this question.

synapsesocial.com/papers/69994a7f873532290d01ee69https://doi.org/10.1134/s1995080225611865
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