Evolution Of Oil Drilling Methods – From pollution to green and low-carbon island revitalization: sustainable tourism results of the exhibition (Triennial) for SDG 8.9 in Setouchi
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Evolution Of Oil Drilling Methods
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From Digitalisation To Intelligence: The Real Transformation In The O&g Industry
Department of Computer Electronics, Faculty of Information Technologies, Tver State Technical University, 22 Afanasiya Nikitina emb., 170026 Tver, Russia
Submitted: January 22, 2023 / Revised: February 13, 2023 / Approved: February 17, 2023 / Published: February 18, 2023
The purpose of the software development presented in the article is to obtain detailed information on the surface of the well walls that is required for more effective and safer drilling and casing of the well. The software developed from the automatic system “LogPWin” allows to get a clear idea of the mine itself, in addition to reducing the time spent on the process and analysis of the model obtained during the registration process. A software product developed as a result of the work allows the data displayed from an acoustic profile to give a visual and informative idea of the research subject. The program provides detailed information on the surface of the mine walls with a 3D model. It is possible to rotate and scale the object; It also has a color palette that can be changed based on incoming data. The program can be applied in the oil and gas industry and in mining, as well as in the drilling of wells for other purposes. The program interface is very clear and simple. The structure of the program is designed in such a way that it allows to obtain the data to build something not only in real time, but also in connection with a ready-made .txt file.
Oil and gas are important natural resources that are necessary for human life as well as industrial production. Well drilling methods are used to extract these resources which are located at great depth. The method of drilling oil or gas wells depends on the location of the rock formation. Drilling can be vertical, horizontal or inclined. The horizontal method of drilling is considered the most effective and least expensive. Thanks to this method, it is possible to extract oil from hard-to-reach places and develop complex rock sections.
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The arsenal of tools and technologies used to improve oil recovery and operate remaining oil reserves is constantly improving. Currently, many improvements based on the existing technology have been proposed and domestic experiments and technology have been developed to build such wells, but still some problems remain. For example, the problem of increasing well flow in the face of declining production is serious for most of the world’s oil producing countries. Horizontal wells, even with a nominal diameter, have a very hard wall due to the use of rotary tools.
One of the solutions to this problem is the introduction of good 3D profile models, which provide a detailed analysis of the field. The current situation with piezoelectric materials and digital electronic devices, as well as the development of acoustic recording theory, allows this combined method to be fully implemented.
In the presented work, the aim is to visualize data from an acoustic profile to complement and refine the results of standard acoustics. The final software product consists of a program that acquires and processes data for the final model. The libraries of this program also contain the tables needed to run the program. It should be noted that drilling engineers can use the final software product for more efficient and safe drilling and well casing, as well as for setting up interfaces for installing casing drilling equipment (packers).
The disadvantages of conventional drilling systems with hydraulic downhole motors can be greatly reduced by using rotary drilling systems, in which the bit moves along a predetermined path with continuous rotation of the drill bit. The increase in well drag is determined by the relationship between the lateral cutting volumes and the drill bit in the forward direction. In both systems, at the bit level, the axis of rotation of the bit always makes an angle with respect to the axis of the well.
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The value of this angle is determined by the geometry of the tool and the radius of the hole edge. Fully automated systems were first used in very expensive, high deviation wells, where they provided the ability to solve problems that existing drill motor systems could not. These wells were drilled using Camco rotary drilling systems and continuous monitoring of the hydrostatic pressure in the well.
According to the work of Li Huang, Sophie Ebersold, Alexander Kogtenkov, Alexandr Naumchev, Bertrand Meyer, Yinling Liu and ALiyu Alege, reservoir development using visual processing of acoustic profile data greatly simplifies the understanding of the resulting discharge structure and at the same time in time allows one to achieve in detail. definition of good profile. The technology of using this mixture will play an important role both in the drilling phase and more importantly, in the well completion phase. Widespread recognition of the real benefits of visualization has opened up a new market for continuous pipe drilling [1, 2, 3, 4, 5, 6, 7].
Registration is done by electrical, magnetic, thermal, acoustic and other methods. When measuring at the well with the help of geophysical sensors that are lowered on a cable, some quantities are measured that are related to one or all of the physical properties of the rocks passed through the well (Figure 1). Sensor signals are sent to the surface and recorded by mobile ground instruments in analog (in the form of diagrams) or in digital form.
Cultivation is a very complex process, its method depends on the function, type of land, soil characteristics and other factors. The obtained results can be useful both in equipment repair and in the development process of a discovered oil or gas field. The use of wells takes place in various ways, but all are united by a common task: the study of natural and man-made physical fields, which have different natures. The increase in logging depends on the characteristics and soil type.
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Recording is generally classified as electrical, magnetic, thermal or acoustic. We pay attention to one of the types of acoustic recording – sound recording of waves.
Unlike traditional sonic logging, sound wave logging is a method that deals with the parameters of not only the longitudinal wave, but also other elastic waves propagating in the well. Among these waves, first of all, is a transverse wave, in which changes in the environment around the well occur perpendicular to the direction of wave propagation – the so-called oscillation changes. Among the pseudo-Rayleigh wave packets, a packet of low-frequency, high-amplitude oscillations associated with the Stoneley wave is usually recorded. This wave in the low frequency range (less than 3 kHz) is usually called a tube wave. Currently, in the practice of recording waves with information waves, there are three waves, that is, they have found practical application in solving geological problems: longitudinal wave (P), transverse wave (S) and Stoneley wave (St ).
Due to the high frequency propagation, pseudo-Rayleigh wave parameters have not yet found application in production geophysical studies. The most commonly used modules are:
The direct use of mechanical cable tool tools, such as profilers, involves a high risk of accidents when the tool reaches the well in the output line. Therefore, horizontal well profilometry is a very rare type of research, despite the great need to interpret data from radioactive sources and
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