UDC: 
DOI: 
10.22389/0016-7126-2021-973-7-9-20
1 Loginov D.S.
Year: 
№: 
973
Pages: 
9-20

Pangea, JSC

1, 
Abstract:
The author describes four main work directions of creating geophysical maps using modern software, represented by specialized systems (SSS) and geographic information ones (GIS). The technological features of data processing practice stages and creating geophysical fields’ digital models, the compilation and designing geophysical maps’ thematic content as results of geological and geophysical works are considered. The main tasks of combined use of GIS and SSS tools were identified. To overcome these shortcomings, additional tools were developed for ArcGIS, as the leading system in the oil and gas industry. They ensure the preservation of design parameters for color scales adopted in the SSS; automatic calculation of the labels’ rotation angle to the objects of point localization; maintaining the layer structure of map projects at exporting to publishing program formats. The solutions considered in the article can be applied for compilation and design of isoline maps in some other areas of thematic cartography, and can also contribute to improving the cartographic component of domestic geological and geophysical software products and geographic information systems.
The author is grateful to Ph.D. A. A. Vikhoreva for the software implementation of the tools specified in this article and to Ph.D. S. A. Krylov for constructive and valuable comments, which allowed to improve the quality of content article.
References: 
1.   Prostranstvennye dannye: potrebnosti ekonomiki v usloviyakh tsifrovizatsii. Moskva: NIU VShE, 2020, 128 p. URL: https://www.hse.ru/data/2020/02/13/1573567778/doklad1.pdf (accessed: 28.01.2020).
2.   Degterev A. Yu. Geoinformatsionnoe soprovozhdenie sozdaniya i ekspluatatsii podzemnykh khranilishch gaza. Territoriya NEFTEGAZ, 2015, no. 12, pp. 42–50.
3.   Lang E. I. Metodicheskoe posobie po prakticheskomu ispol'zovaniyu rasshireniya MapDesigner dlya oformleniya kart i skhem geologicheskogo soderzhaniya v srede ArcGIS. SPb.: VSEGEI, 2014, 80 p.
4.   Loginov D.S. (2019) Cartographic support of geophysical research: current situation and prospects. Geodezia i Kartografia, 80(8), pp. 32-44. (In Russian). DOI: 10.22389/0016-7126-2019-950-8-32-44.
5.   Markov N. G. Geoinformatsionnye sistemy predpriyatii neftegazovoi otrasli: funktsional'nost', arkhitektura i perspektivy razvitiya. Izv. Tomskogo politekhn. un-ta. Inzhiniring resursov, 2017, Vol. 328, no. 9, pp. 16–32.
6.   Sozdanie gosudarstvennykh geologicheskikh kart na baze GIS INTEGRO: Metod. rekomendatsii. Moskva: GNTs VNIIgeosistem, 2001, 208 p.
7.   ArcGIS Desktop. URL: desktop.arcgis.com/ru/arcmap (accessed: 12.08.2020).
8.   Golden Software Support. URL: support.goldensoftware.com/hc/en-us/sections/204151518-Surfer (accessed: 12.08.2020).
9.   Oasis Montaj. URL: www.geosoft.com/products/oasis-montaj (accessed: 12.08.2020).
10.   Petrel E and P Software Platform. URL: www.software.slb.com/products/petrel (accessed: 12.08.2020).
11.   QGIS User Guide. URL: docs.qgis.org/3.4/pdf/ru/QGIS-3.4-UserGuide-ru.pdf (accessed: 12.08.2020).
Citation:
Loginov D.S., 
(2021) Application of computer technologies and their potential to develop geophysical mapping. Geodesy and cartography = Geodezia i Kartografia, 82(7), pp. 9-20. (In Russian). DOI: 10.22389/0016-7126-2021-973-7-9-20
Publication History
Received: 06.07.2020
Accepted: 23.04.2021
Published: 20.08.2021

Content

2021 July DOI:
10.22389/0016-7126-2021-973-7