Regional Seismic Survey on the Arctic Shelf is a Key to Discovery of New Oil and Gas Fields

Author(s):  
S.I. Shkarubo ◽  
G.S. Kazanin ◽  
I.V. Zayats ◽  
S. Pavlov
Author(s):  
O.T. Gudmestad ◽  
J.E. Vindstad ◽  
H. Greiff Johnsen ◽  
A.B. Zolotukhin

2021 ◽  
Vol 1201 (1) ◽  
pp. 012064
Author(s):  
Yu A Kharchenko ◽  
K N Krotov

Abstract The subsea type of arrangement is no alternative for remote deep-sea oil and gas fields of the Arctic shelf. One of the main factors determining the level of reliability of year-round production of hydrocarbons using subsea production complexes is the availability of effective control and power supply systems. In this article the current state of subsea production complexes is studied, possible ways to develop power supply and control systems are analyzed in order to increase their efficiency and reliability when used in deep-water remote fields of the Arctic shelf.


Author(s):  
V.L. Martynov ◽  
◽  
A.S. Golosnoy ◽  
Yu.G . Ksenofontov ◽  
M.S. Shimanskaya ◽  
...  

The modern policy of the Russian Federation on subsoil use on the Arctic shelf, as well as the need in the coming years to begin exploration and further operation of identified oil and gas fields in accordance with the offshore projects of the South, Arctic and Far Eastern Seas, using domestic equipment, based on universal underwater vehicles (PA) only confirms this. To develop a strategy for the creation of multifunctional equipment, it is necessary to monitor the accuracy characteristics of sensors and measurement methods in the hydrosphere. Based on the results of the studies, it is possible to conclude those preferences that will ensure the greatest effectiveness of measurements in the aquatic environment for the development of the Arctic shelf. The article considers the existing methodology of measurements at the working depths of the world’s oceans and analyses the specified efficiency of sensors, the principle of operation of which covers the use of technologies for creating and functioning in various physical fields.


Polar Record ◽  
2020 ◽  
Vol 56 ◽  
Author(s):  
Sohvi Kangasluoma

Abstract Despite the global alarm caused by accelerating climate change, hydrocarbon companies are exploring and opening up new oil and gas fields all over the world, including the Arctic. With increasing attention on the Arctic, companies address the growing global environmental pressure in their public marketing in various ways. This article examines the webpages of Norwegian Equinor and Russian Gazprom & Gazprom Neft. Building on feminist discussions, I analyse the different justification strategies these fossil fuel companies working in the Arctic utilise in order to support their ongoing operations. This article concludes that in order to justify their operations in the Arctic, the Norwegian and Russian companies emphasise values based on discourses that have historically and culturally been associated with masculine practices, such as the control of nature enabled by technology. These justifications are thus reinforcing the narrative of the Arctic as a territory to be conquered and mastered. Even though the companies operate in different sociopolitical contexts, the grounds of justification are rather similar. Their biggest differences occur in their visual presentations of gender, which I argue is part of the justification. Approaching the fossil fuel industry from a feminist perspective allows questioning the dominant conceptualisations, which the justifications of Arctic hydrocarbon companies are based on.


2021 ◽  
pp. 57-68
Author(s):  
N. Yu. Moskalenkо

The relevance of the article is associated with the importance of the object of the research. Dozens of unique and giant oil and gas fields, such as Urengoyskoye, Medvezhye, Yamburgskoye, Vyngapurovskoye, Messoyakhskoye, Nakhodkinskoye, Russkoye, have been identified within the Cenomanian complex. The main feature of Cenomanian rocks is their slow rock cementation. This leads to significant difficulties in core sampling and the following studies of it; that is the direct and most informative source of data on the composition and properties of rocks that create a geological section.The identification of the factors, which determine the slow rock cementation of reservoir rocks, allows establishing a certain order in sampling and laboratory core studies. Consequently, reliable data on the reservoir and estimation of hydrocarbon reserves both of discovered and exploited fields and newly discovered fields that are being developed on the territory of the Gydan peninsula and the Bolshekhetskaya depression will be obtained. This study is also important for the exploration and development of hydrocarbon resources of the continental shelf in the waters of the Arctic seas of Russia as one of the most promising areas.As a result of the analysis, it was found that the formation of rocks of the PK1-3 Cenomanian age of the Bolshekhetskaya depression happened under conditions of normal compaction of terrigenous sedimentary rocks that are located in the West Siberian basin. Slow rock cementation of reservoir rocks is associated with relatively low thermobaric conditions of their occurrence, as well as the low content of clay and absence of carbonate cements. Their lithological and petrophysical characteristics are close to the analogous Cenomanian deposits of the northern fields of Western Siberia and can be applied to other unconsolidated rocks studied areas.


2021 ◽  
Vol 6 (3) ◽  
pp. 130-135
Author(s):  
Elena A. Poskonina ◽  
Anna N. Kurchatova

Background. Designing problems of oil fields infrastructure in the Arctic under climate change, namely, applying of temperature coefficient when calculating bearing capacity, heaving of lightly loaded foundations, optimization of thermal stabilization solutions are presented in the article. Aim. To change the strategy for designing foundations on permafrost by choosing the worst soil conditions to the implementation of an invariant matrix for designing and construction of soil bases and foundations considering specifics of industrial facilities of oil and gas fields based on unified numerical calculations (regulations). Materials and methods. An overview of the current regulatory requirements to the design of foundations on permafrost is made. The analysis of forecast modeling of the temperature of soil bases of typical industrial facilities of oil and gas fields to justify design solutions and also the use of thermal stabilization systems is done. Results. It is proposed to develop a regional directory of weather stations with long observation period based on updated climate data to decrease the volume of designing work and the amount of mistakes in applying of thermal stabilization systems. It is necessary to create regional dynamic models of permafrost geosystems, implement forecast modeling of seasonal thawing potential depth and frozen ground temperature in natural landscapes on the base of geotechnical monitoring data and select adaptation methods to existing or expecting climate change trends. Conclusions. Regulations on designing and construction of soil bases and foundations on permafrost considering specifics of industrial facilities of oil and gas fields is an effective solution. It allows moving on the strategy implementation of uniform approaches to oil fields development on permafrost: from designing for every structure on the base of typical solutions and results of engineering surveys to invariant matrix of project solutions.


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