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| Biblioqrafik təsvir | | Agayev , B.S. Mechanical parameters of drilling as factors of operational detection of high-pressure zones / B.S. Agayev // Nafta-Gaz. - 2025. - N: 81 (3). - P. 177-182. | | Annotasiya | | The article analyzes methods and technologies for assessing abnormal reservoir pressure and operational detection of abnormally high pressure zones when drilling oil and gas wells. Prevention of accidents and complications by detecting these zones is assessed as one of the main methods to improve the efficiency of oil work. Methods for detecting abnormal reservoir pressure, as well as signs used for this purpose, are systematized and classified. The advantages of the developed methods, which are based on the dependencies between technical drilling parameters, are substantiated, since the systems created on their basis allow detection in realtime without stopping drilling. We conducted monitoring to identify the state of application of modern digital technologies in drilling and operating oil and gas wells in the Azerbaijani oil and gas company SOCAR (as part of the companys grant project). In particular, the situation with the assessment of abnormal reservoir pressure and the automation of the processes of forecasting zones of abnormally high reservoir pressure were determined. The main results of monitoring are noted. The feasibility of using modern digital technologies to predict zones of abnormally high reservoir pressure in the SOCAR company is substantiated. Some recommendations and proposals are given for this purpose. A method is proposed that is included in this group of operational detection, which also allows for the calculation of the density of the weighted drilling mud to counteract the abnormal pressure. A brief summary of the detection principle, functional blocks, and the operation of the system based on this method is given. An algorithm for the operation of the system has been developed. Based on this algorithm, a control program was written in the C++ programming language. The operability of the system was tested by laboratory experiments based on the method of computer simulation. | | Elektron variant | | Elektron variant |
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