Potential field interpretation can be carried out using multiscale methods. This class of methods analyses a multiscale data set, which is built by upward continuation of the original data to a number of altitudes conveniently chosen. Euler deconvolution can be cast into this multiscale environment by analysing data along ridges of potential fields, e.g., at those points along lines across scales where the field or its horizontal or vertical derivative respectively is zero. Previous work has shown that Euler equations are notably simplified along any of these ridges. Since a given anomaly may generate one or more ridges we describe in this paper how Euler deconvolution may be used to jointly invert data along all of them, so performing a mu...
We start from the general inverse problem for potential fields and discuss the validity and suitabil...
The voluminous gravity and magnetic datasets demand automatic interpretation techniques like Naudy, ...
SUMMARY We use a multiscale approach as a semi-automated interpreting tool of potential fields. T...
Potential field interpretation can be carried out using multiscale methods. This class of methods an...
A new method based on 3D multiridge analysis of potential fields assumes a 3D subset in the harmonic...
A new method based on 3D multiridge analysis of potential fields assumes a 3D subset in the harmonic...
In this paper we will explore the performances of the joint inversion, through the Euler reduced equ...
<div>Euler deconvolution is a technique based anomaly measurements, its derivatives and structural i...
The Euler homogeneity relation expresses how a ho-mogeneous function transforms under scaling. When ...
Euler deconvolution is a commonly employed magnetic interpretation method because it requires only a...
The way potential fields convey source information depends on the scale at which the field is analys...
The conventional Euler deconvolution has 5 unknown parameters to be solve which are the location of ...
We use a multiscale approach as a semi-automated interpreting tool of potential fields. The depth t...
In this tutorial, we will talk about a widely used method of interpretation for potential-field dat...
Conventional Euler deconvolution is widely used for interpreting profile, grid, and ungridded potent...
We start from the general inverse problem for potential fields and discuss the validity and suitabil...
The voluminous gravity and magnetic datasets demand automatic interpretation techniques like Naudy, ...
SUMMARY We use a multiscale approach as a semi-automated interpreting tool of potential fields. T...
Potential field interpretation can be carried out using multiscale methods. This class of methods an...
A new method based on 3D multiridge analysis of potential fields assumes a 3D subset in the harmonic...
A new method based on 3D multiridge analysis of potential fields assumes a 3D subset in the harmonic...
In this paper we will explore the performances of the joint inversion, through the Euler reduced equ...
<div>Euler deconvolution is a technique based anomaly measurements, its derivatives and structural i...
The Euler homogeneity relation expresses how a ho-mogeneous function transforms under scaling. When ...
Euler deconvolution is a commonly employed magnetic interpretation method because it requires only a...
The way potential fields convey source information depends on the scale at which the field is analys...
The conventional Euler deconvolution has 5 unknown parameters to be solve which are the location of ...
We use a multiscale approach as a semi-automated interpreting tool of potential fields. The depth t...
In this tutorial, we will talk about a widely used method of interpretation for potential-field dat...
Conventional Euler deconvolution is widely used for interpreting profile, grid, and ungridded potent...
We start from the general inverse problem for potential fields and discuss the validity and suitabil...
The voluminous gravity and magnetic datasets demand automatic interpretation techniques like Naudy, ...
SUMMARY We use a multiscale approach as a semi-automated interpreting tool of potential fields. T...