新型可膨胀地面导体基础深水水下井口承载力数值模拟

Minghe Zhang, Jin Yang, Qishuai Yin, Yu Song, Yuanming Wang, Yisu Zhou, Lei Li, Yuxiang Yang
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引用次数: 0

摘要

水下井口稳定性是深水和超深水油气钻井作业中的一个重要技术问题。由于泥线下土体主要为粉土和粘土,胶结性较弱,地表导体提供的垂直摩擦力和水平位移有限。水下井口的位移和应力等力学性能主要分布在泥浆线附近。新型可膨胀表面导体通过在导体表面添加环空吸收性膨胀材料,可以有效提高水下井口的垂直承载能力和水平力学性能。本文利用ABAQUS软件建立了新型可膨胀表面导体的数值模拟模型。在地面导体的上部、中部和下部分别安装环空膨胀材料,分析其对水下井口力学性能的影响。同时,对比分析了常规导管与新型膨胀导管水下井口的力学性能。结果表明:布置在泥线附近的新型可膨胀表面导体能有效提高水下井口的横向力学性能,但对井口的竖向承载力影响不大,这主要是由于泥线附近土体性质较弱所致。导管中下部环空膨胀材料对水下井口横向力学性能影响不大,但对提高井口竖向承载能力的作用更为明显,这是因为泥线以下深层地层力学性能较强,导管的水平位移和弯矩不会传递到泥线以下更大的深度。同时,膨胀材料下端部分对水下井口的垂直承载力有明显的影响。通过数值模拟方法对新型可膨胀表面导体改善水下井口力学性能及基本规律进行探索性研究,为后续新型可膨胀表面导体的工业设计和应用提供理论指导。
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Numerical Simulation of Subsea Wellhead Bearing Capacity in Deepwater with Novel Expandable Surface Conductor Foundation
Subsea wellhead stability is an important technical issue in deepwater and ultra-deepwater oil and gas drilling operations. Since the soil under mudline is mainly silt and clay with weak cementation, the vertical friction force and horizontal displacement provided by the surface conductor are limited. The mechanical properties of subsea wellhead, including displacement and stress, are mainly distributed near the mud line. The novel expandable surface conductor can effectively enhance the vertical bearing capacity and horizontal mechanical properties of the subsea wellhead by adding annular absorbent expansion materials to the conductor surface. In this paper, ABAQUS software was used to establish a numerical simulation model of the novel expandable surface conductor. Annular expansion material was installed on the upper, middle, and lower part of the surface conductor, respectively, to analyze its influence on the mechanical properties of the subsea wellhead. At the same time, the mechanical properties of the subsea wellhead of the conventional conductor and the novel expandable conductor are compared and analyzed. The results show that the novel expandable surface conductor arranged near the mudline can effectively enhance the lateral mechanical properties of the subsea wellhead, but has little effect on the vertical bearing capacity of the wellhead, which is mainly due to the weak soil properties near the mudline. The annular expansion material in the middle and lower part of the conductor has little influence on the lateral mechanical properties of the subsea wellhead, but it is more obvious to improve the vertical bearing capacity of the wellhead, which is because the mechanical properties of the deep formation below the mudline are strong, and the horizontal displacement and bending moment of the conduit will not be transmitted to a greater depth under the mudline. At the same time, the lower end part of the expansion material has obvious influence on the vertical bearing capacity of subsea wellhead. An exploratory study on the improvement of the mechanical properties of the subsea wellhead with the novel expandable surface conductor and basic rule is carried out through the numerical simulation method, which provides theoretical guidance for the subsequent industrial design and application of the novel expandable surface conductor.
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