Mathematical modeling of the stress-strain state of the annular preventer seal using the theory of reinforced shells

IF 1.9 Q3 ENGINEERING, INDUSTRIAL Production Engineering Archives Pub Date : 2022-10-21 DOI:10.30657/pea.2022.28.46
Jaroslav Grydzhuk, I. Chudyk, O. Slabyi, Yurii Mosora, Mariana Kovbaniuk, M. Krynke
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Abstract

Abstract Management of wells in the process of their construction is one of the important factors in ensuring the safety of the technological process. Blowout equipment, which includes annular preventers, is used to control the wells. This applies to the construction of oil and gas wells, or wells that provide degassing of coal seams to reduce their gas-dynamic activity. For the purpose of safe and long-term operation of annular preventers on the basis of the theory of thick-walled combined reinforced shells and the carried-out analytical research, the mathematical model for research of a stress-strain condition of a seal of an annular preventer has been offered. Taking into consideration the real design, the seal of the annular preventer is modeled by a rubber shell, reinforced in the circular direction by rubber frames, and in the longitudinal direction by metal stringers. The mathematical model provides for determining the stiffness, internal force factors and stresses in the longitudinal and transverse sections of the combined rubber-metal seal, considering the peculiarities of its operation. At the same time, the model includes the conditions of interaction of the rubber base of the seal with a pipe, as well as the action of sealing pressure under operating conditions. The use of the proposed mathematical model reduces the costs of experimental research and will contribute to ensuring the reliability of simulation modeling results. The advantage of the method is the determination of calculated loads at different points of the combined seal under the existing state of dangerous zones and the influence of operating conditions. In the meantime, prerequisites have been created for expanding the possibilities of simulation modeling and designing structural elements of annular preventers with increased operational characteristics. The practical value of the obtained results is determined by the possibility of using them to ensure the performance of the rubber-metal seal both at the stage of its design and during the operation.
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应用加筋壳理论建立环形防喷器密封应力-应变状态的数学模型
摘要井在施工过程中的管理是保证工艺过程安全的重要因素之一。井喷设备包括环空防喷器,用于控制油井。这适用于油气井的建设,或提供煤层脱气以减少其气动力活动的井。为了保证环空防喷器的长期安全运行,在厚壁组合式强化壳理论的基础上,通过分析研究,提出了环空防喷器密封应力-应变状态研究的数学模型。考虑到实际设计,环形防喷器的密封采用橡胶外壳造型,圆形方向采用橡胶框架加固,纵向方向采用金属弦加固。考虑到橡胶-金属组合密封的工作特性,建立了计算橡胶-金属组合密封纵断面和横断面刚度、内力因子和应力的数学模型。同时,该模型还考虑了密封橡胶底座与管道的相互作用条件,以及工作条件下密封压力的作用。所提出的数学模型的使用降低了实验研究的成本,有助于保证仿真建模结果的可靠性。该方法的优点是在危险区域的存在状态和运行条件的影响下,确定组合密封各点的计算载荷。与此同时,为扩大模拟建模的可能性和设计具有更高操作特性的环空防喷器结构元件创造了先决条件。所得结果的实用价值取决于是否有可能使用这些结果来保证橡胶-金属密封在设计阶段和使用过程中的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Production Engineering Archives
Production Engineering Archives Engineering-Industrial and Manufacturing Engineering
CiteScore
6.10
自引率
13.00%
发文量
50
审稿时长
6 weeks
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