Anti-collision Optimization Design Technology of Large Infill Cluster Well Group in Bohai Sea Artificial Island B

Wenhao Xu
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Abstract

In view of the difficulty and low efficiency in the design of collision prevention and obstacle avoidance in the large-scale infilling adjustment of the cluster well group in Bohai Sea artificial island B, based on the analysis of the overall situation and characteristics of the infilling well, accurate calibration of already drilled data, and using industry standard principles for cluster well platform optimization and anti-collision design, develop specific procedures for designing anti-collision tracks for large-scale infill wells, form anti-collision optimization design methods, optimize drilling sequence, slot matching relationship and anti-collision track design parameters. The track design and anti-collision analysis of 45 infill wells have been completed in the limited platform space through multiple slot adjustment and track optimization.The minimum value of the separation coefficient of each well meets the requirements of the industry standard minimum limit of 1.5, and 70% of them are concentrated above 1.7, which reduces the risk of anti-collision as a whole.The results show that the anti-collision optimization design technology of large-scale infill cluster well group can effectively solve the anti-collision design problem of large-scale infill adjustment of cluster well group, and help to improve the design quality and efficiency.
渤海B人工岛大型充填簇井群防撞优化设计技术
针对渤海B人工岛簇井群大规模充填调整中防撞避障设计难度大、效率低的问题,在分析充填井总体情况和特点的基础上,对已钻数据进行准确标定,并运用行业标准原则进行簇井平台优化和防撞设计,制定大型井防撞轨道设计具体程序,形成防撞优化设计方法,优化钻进顺序、槽位匹配关系和防撞轨道设计参数。在有限的平台空间内,通过多次调槽和轨迹优化,完成了45口井的轨迹设计和防撞分析。每口井的分离系数最小值满足行业标准最小限值1.5的要求,70%集中在1.7以上,整体上降低了防撞风险。结果表明,大规模充填簇井组防撞优化设计技术能有效解决簇井组大规模充填调整防撞设计问题,有助于提高设计质量和效率。
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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