超高温高压油井压裂瞬态过程中的管串强度安全分析

IF 3.5 3区 工程技术 Q3 ENERGY & FUELS
Boyuan Yang, Hui Zhang, Kunhong Lv, Baokang Wu, Yuting Zhou, Xingyu Li, Ze Yang, Rui Yuan
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引用次数: 0

摘要

随着深层油气资源的不断开发,高温高压井的数量越来越多,压裂作业的复杂性也日益凸显。压裂作业的安全进行对提高生产效率至关重要。为研究高温高压井压裂绳的强度和安全性,建立了高温高压井压裂绳温度-压力耦合瞬态计算模型。采用安全系数法和三轴应力分析法评估高温高压井压裂绳的安全性。采用该方法对高温高压井中的压裂串进行了评估,分析了压裂液注入速度和压裂串尺寸对压裂串应力的影响。结果表明,压裂串井口的轴向力和等效应力最大;随着压裂时间和压裂液注入率的增加,压裂串井口的轴向应力和等效应力也随之增加。小尺寸管道有利于提高压裂管串作业的安全系数。研究成果可为高温高压井压裂管串的设计提供理论指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Safety analysis of pipe string strength during transient process of ultrahigh temperature and high pressure well fracturing

Safety analysis of pipe string strength during transient process of ultrahigh temperature and high pressure well fracturing

With the continuous development of deep oil and gas resources, the number of high-temperature and high-pressure wells is increasing, and the complexity of fracturing operations is becoming more pronounced. The safe conduct of fracturing operations is crucial for improving production efficiency. To investigate the strength and safety of fracturing strings in high-temperature and high-pressure wells, a transient calculation model of temperature-pressure coupling was established for fracturing strings in high-temperature and high-pressure wells. The safety factor method and triaxial stress analysis were employed to evaluate the safety of fracturing strings in high-temperature and high-pressure wells. The method was used to assess the fracturing strings in high-temperature and high-pressure wells, and the effects of fracturing fluid injection rate and string size on the stress of the strings were analyzed. The results indicate that the axial force and equivalent stress at the wellhead of the fracturing string are the highest; as the fracturing time and injection rate of the fracturing fluid increase, the axial stress and equivalent stress at the wellhead of the fracturing string also increase. Small-sized pipes are conducive to improving the safety factor of fracturing pipe string operations. The research findings can provide theoretical guidance for designing fracturing strings for high-temperature and high-pressure wells.

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来源期刊
Energy Science & Engineering
Energy Science & Engineering Engineering-Safety, Risk, Reliability and Quality
CiteScore
6.80
自引率
7.90%
发文量
298
审稿时长
11 weeks
期刊介绍: Energy Science & Engineering is a peer reviewed, open access journal dedicated to fundamental and applied research on energy and supply and use. Published as a co-operative venture of Wiley and SCI (Society of Chemical Industry), the journal offers authors a fast route to publication and the ability to share their research with the widest possible audience of scientists, professionals and other interested people across the globe. Securing an affordable and low carbon energy supply is a critical challenge of the 21st century and the solutions will require collaboration between scientists and engineers worldwide. This new journal aims to facilitate collaboration and spark innovation in energy research and development. Due to the importance of this topic to society and economic development the journal will give priority to quality research papers that are accessible to a broad readership and discuss sustainable, state-of-the art approaches to shaping the future of energy. This multidisciplinary journal will appeal to all researchers and professionals working in any area of energy in academia, industry or government, including scientists, engineers, consultants, policy-makers, government officials, economists and corporate organisations.
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