Decomposition of the gravitational field inversion using the assembly method for the ore model

The paper presents consideration of the solution of the nonlinear inverse problem of gravity exploration in the grid class of field sources if there are anomalies in the section that have positive and negative effective densities. In this case, practical equivalence is very strong and the reliabilit...

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Bibliographic Details
Main Author: Dolgal, A.S.
Format: Article
Language:Russian
Published: Institute of Volcanology and Seismology FEB RAS 2019-03-01
Series:Вестник Камчатской региональной ассоциации "Учебно-научный центр". Серия: Науки о Земле
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Online Access:http://www.kscnet.ru/journal/kraesc/article/viewFile/233/pdf
Description
Summary:The paper presents consideration of the solution of the nonlinear inverse problem of gravity exploration in the grid class of field sources if there are anomalies in the section that have positive and negative effective densities. In this case, practical equivalence is very strong and the reliability of the results of quantitative interpretation decreases. Based on the assembly method the author consideres the possibility of decomposing the inverse problem into two separate computational procedures. It is implemented using pre-separation of the gravitational field into components caused by objects with different effective densities. The author used a system of equivalent sources that were successively plunged to a depth approximating the interpreted field. Experiments showed that with a certain depth of sources, it is possible to rather accurately restore the «positive» and «negative» components. For each of them, the solution of the inverse problem is separately carried out, then the obtained results are synthesized, i.e. the construction of a unified geodensity model, which makes it possible to provide complete automation of additive interpretation technologies. The paper includes model examples illustrating the proposed approach.
ISSN:1816-5524
1816-5532