THE STUDY OF THE CAUSE OF FAILURE OF THE MAIN ELEMENTS OF THE CHIRTMAS TREE AND EFFECTIVE SOLUTION WAYS

Author:

Zenfira Huseynli Zenfira Huseynli,Calal Babazade Calal Babazade

Abstract

The article is devoted to the study of the causes of failures of fountain fittings in the process of operation, the measures taken to eliminate failures, increase efficiency and increase the overhaul period. İn order to improve the efficiency of the fountain fittings, the works that can be performed during major and current repairs are investigated. The main purpose of this article is to increase the reliability of the design of the fountain fittings. This article explores the causes of failure that may occur in wellhead christmas trees, their causes and solutions. The general design of x-mas trees is shown. Basically, christmas tree fittings are cross-shaped, three-necked and, depending on the design, for a working pressure of 21, 35, 70, 105, 140 MPa. x-mas trees perform the main and most important work, such as hanging tubing, shutting off the wellhead, providing the necessary pressure on the wellhead, and regulating oil production. As is known, during the operation of oil and gas wells, along with the main product, clay, sand and abrasive particles are removed from the well. Among these impacts, christmas trees are exposed to the corrosive attack of sand flowing with oil, gas and water during operation. It is the cross and the connecting elements of the x-mas tree - closing valves, the cross, the christmas tree, a pair of gates - saddles, the sealing elements that are most susceptible to eating (wear). Due to the fact that these processes occur under high pressure, a number of important requirements are imposed on the design of x-mas trees. İmproving the design of x-mas trees, which is wellhead equipment, is always one of the most important tasks in operation. In order to improve the efficiency of x-mas trees, the works that can be performed during major and current repairs have been studied. The main purpose of this article is to study the improvement of the reliability indicators of the x-mas tree design, increase the overhaul period. Keywords: Christmas tree, stem, valve, globe valve,packing element, shut-off valve, disc - saddle pair.

Publisher

Education Support and Investment Fund NGO

Subject

Immunology

Reference10 articles.

1. Aslanov Jamaladdin Nuraddin, Huseynli Zenfira Seyidi. Методика расчета параметров герметизации уплотнительного узла пакера. Chapter «Engineering sciences», DOI:https://doi.org/10.30525/978-9934-588-15-0-49 http://baltijapublishing.lv/download/all-science-3/49.pdf p.8-13

2. Jamaladdin Nuraddin Aslanov, Axira Baxman Sultanova, Zenfira Seydi Huseynli

3. Development of the fuzzy model for predicting the improved constructions efficiency of valves during exploitation on the statistical data basis. Reuters Engineering Computations, No.8 (3). Volume 34. Emerald Group Publishing Ltd., 2017. Proceedings of the Journal are located in the Databases Scopus and Web of Science. Source Normalized Impact per Paper (SNIP): 0.717 SCImago Journal Rank (SJR): 0.387 Impact Factor:1.010 5-Yr Impact Factor: 1.3702016 Journal Citation Reports®, Thomson

4. Aslanov J.N., Sultanova A.B., Huseynli Z.S., Mustafayev F.F. Determination of radial strains in sealing elements with rubber matrix based on fuzzy sets. 11th İNTERNATİONAL CONFERENCE on THEORY and APPLİCATİON of SOFT COMPUTİNG, COMPUTİNG with WORDS and Artificial İntelligence İCSCCW -2021. DOİ: 10.1007/978-2-030-92127-9_101 (İndexed by Web of Science and Scopus) 23-24 avqust, 2021, pp.765-773, Antalya, Türkiyə.

5. C.N. Aslanov, Z.S. Huseynli, N.M. Abbasov, A.V. Sharifova Durability study of specialized sealing elements IJTPE - Issue 52, Volume 14, Number 3, September 2022 (Serial No: 0052-1403-0922)

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