Innovative technologies for the integrated development of underground formation waters of oil and gas fields in Western Siberia

Author(s):  
E.A. Shapovalova ◽  
◽  
T.Yu. Telushkina ◽  
2021 ◽  
pp. 13-22
Author(s):  
R. M. Bembel ◽  
S. R. Bembel ◽  
M. I. Zaboeva ◽  
E. E. Levitina

Based on the well-known results of studies of the ether-geosoliton concept of the growing Earth, the article presents the conclusions that made it possible to propose a model of thermonuclear synthesis of chemical elements that form renewable reserves of developed oil and gas fields. It was revealed that local zones of abnormally high production rates of production wells and, accordingly, large cumulative production at developed fields in Western Siberia are due to the restoration of recoverable reserves due to geosoliton degassing. Therefore, when interpreting the results of geological and geophysical studies, it is necessary to pay attention to the identified geosoliton degassing channels, since in the works of R. M. Bembel and others found that they contributed to the formation of a number of hydrocarbon deposits in Western Siberia. When interpreting the results of geological-geophysical and physicochemical studies of the fields being developed, it is recommended to study the data of the ring high-resolution seismic exploration technology in order to identify unique areas of renewable reserves, which can significantly increase the component yield of hydrocarbon deposits.


Author(s):  
V. V. Holodkova ◽  
◽  
A. B. Titov ◽  
J. V. Rjabkin ◽  

The development of oil and gas fields, especially in the Far North, which are caused by complex climatic, geological and geocryological conditions, requires the introduction of innovative technologies. Today, a common option for the development of oil treatment fields is to organize them according to the cluster principle. Providing efficient access to cluster oil treatment is one of the key tasks in the development strategy of the Northern territories of Russia. The article focuses on evaluating the efficiency of the introduction of innovative technologies in the construction of road surfaces in the difficult conditions of the Far North using nanofibrobeton. It is proposed to use a special very light concrete or cellular gas-fiber concrete, which is a dry mixture of non-autoclave production, which is delivered dry to the construction site and only diluted with water directly on site in the volume necessary for a specific operation, after which it is poured into the monolith on the spot. When building access roads when creating an oil and gas field, it is necessary not only to create access roads, but also paths that connect the objects of the field with each other. The use of light concrete in creating access roads, as well as paths that connect the objects of the field with each other, has a number of advantages, especially in terms of low weight and strength. In addition, this coating protects the base from bad weather conditions. This paper presents a comparative calculation of the economic efficiency of using various road construction technologies in these conditions. A detailed overview of the existing tools for evaluation the capital investments, taking into account the time factor, is presented. The specifics of the investment evaluation of the project for the use of nanofibro-concrete for the development of oil and gas fields is a significant service life of the road surface and, consequently, cost savings for current and major repairs.


Georesursy ◽  
2021 ◽  
Vol 23 (4) ◽  
pp. 73-79
Author(s):  
Olga Loktionova ◽  
Lyudmila Kalinina ◽  
Igor Mikhaylov

In the southeast of Western Siberia, the most studied are the Upper Jurassic deposits, most of the oil and gas fields being confined to them. However, the probability of discovering new hydrocarbon deposits in the Upper Jurassic horizons is extremely small. Therefore, of great importance is finding new hydrocarbon deposits in less studied deep-lying complexes. The article considers the development of a criterion for determining the saturation type of the terrigenous reservoirs in the Hettangian-Aalenian deposits in the southeast of the West Siberian sedimentary basin. We use the example of the Ust-Tym megadepression, a large depression located in the central part of the Tomsk region. The Lower and Middle Jurassic sections are represented by the Urman and Togur formations, Salat formation (Peshkov formation is its isochronous analogue) and Tyumen formation, and characterized by the alternation of predominantly sandy (potential reservoirs) and argillaceous-carbonaceous (seals) sequences. In the studied interval, tests were carried out in just a few wells, for which reason the identification of deposits and promising objects is complicated. Determining the type of reservoir saturation will significantly improve the assessment of oil and gas potential. As a result of interpreting lateral logging sounding data, the geoelectric parameters of the invasion zone and undisturbed formation were reconstructed for the Lower Jurassic and Aalenian deposits. Based on the well logging data interpretation by means of numerical inversion, we obtained the criterion for the saturation type of the reservoirs (Ju11-17) in the Hettangian-Aalenian complex. The boundary resistivity values for the oil-saturated reservoirs vary from 8 to 20 ohm∙m, while for the water-saturated ones they do not exceed 5 ohm∙m.


2020 ◽  
Vol 217 ◽  
pp. 04004
Author(s):  
Nina Rogova

In the process of extraction, collection, transportation and primary processing of hydrocarbons, the lands of the fields are often damaged. For the further operation of the oil field, it is necessary to carry out not only reclamation of disturbed lands, but also oil-contaminated lands formed as a result of accidental spills. The natural environment of Western Siberia is a fragile environment and interference in its existing balance as a result of accidental spills of oil products and pollution of land and water bodies leads to negative consequences for the flora and fauna. If the impact on the natural environment during the development of oil and gas fields during the placement of oil field facilities can still be considered as permissible, then the ingress of oil products into the environment should be considered as negative with far-reaching consequences.


2021 ◽  
Vol 2021 (03) ◽  
pp. 178-182
Author(s):  
Alexander Prishchepa

The article analyzes the activities of the head of the Glavtyumenneftegazstroy department Alexey Barsukov during the industrial development of the West Siberian oil and gas province. The article analyzes the economic policy of accelerated hydrocarbon production in the north of the Tyumen region, draws attention to its negative consequences for the economy of the USSR, and focuses on the alternative strategy proposed by A. Barsukov for the development of oil and gas fields in Western Siberia.


2015 ◽  
pp. 122-125
Author(s):  
Yu. . Akulov ◽  
V. A. Dolgushin

The problem of fire and blowout safety during the construction, operation and repair of wells during field development of oil and gas in the far north of Western Siberia. To ensure the safety production facilities offer specific preventive measures, which are aimed at the realization of the efforts of existing fire and blowout units.


2021 ◽  
Vol 6 (1) ◽  
pp. 29-32
Author(s):  
A. A. Bandaletova ◽  
A. Y. Gavrilov ◽  
E. V. Galin

The state of the mineral resource base of hydrocarbons in recent years has been characterized by a decrease in proven reserves and extremely low rates of their reproduction. In Western Siberia, as in other oil-bearing provinces of Russia, economically profitable oil reserves are decreasing. It is obvious that the development of the fuel and energy complex is becoming more focused on the development of hard-to-recover reserves, which account for almost 2/3 of the proven oil reserves. Technologies for the extraction of such raw materials are characterized by higher capital costs, which requires the search for new ways to increase the profitability of projects. One of these areas is the extraction of metals from the associated water of oil and gas fields. In this paper, the possibility of using the technology for extracting lithium from the associated waters of the Orenburg oil and gas condensate field is evaluated, and the boundary conditions for the implementation of this technology are determined.


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