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Breakthrough PDC Technology Used in Saudi Arabia Deep Gas Wells to Significantly Reduce Drilling Time

机译:突破性PDC技术用于沙特阿拉伯深气井,以显着减少钻井时间

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Drilling the intermediate sections in the deep gas fields of Saudi Arabia is challenging because of a long, intricate geological sequence consisting of hard carbonates (limestone and dolomite) interbedded with anhydrite. Historically, the primary operator has attempted to drill the section using both roller cone tungsten carbide (TCI) and polycrystalline compact (PDC) technology. PDC bits provided better penetration rate and durability, as compared to TCI bits. However, several PDC bits were required to drill the section, which increased the time needed for drilling and tripping at relatively deep intervals. The increased time exposes the well to risks when the hole is open for long intervals.After further analyses and a systematic bit optimization process, three new PDC bit designs were created and used, which established new benchmarks in two of the deep gas fields. Meeting the objective of minimizing the number of bit trips by enhancing PDC bit performance and bit durability to drill longer intervals with a higher penetration rates required a new PDC bit technology in conjunction with optimized motor drive. To address the challenge, the operator, bit vendor, and other service companies worked together to develop an optimized solution to drill these sections.The paper reviews the findings of the study in drilling the intermediate sections in two of the challenging deep gas fields. The study shows that PDC bit damage from encountering harder stringers was the primary impediment to achieving better performance. The impediment was overcome by implementing the new cutter technology and drilling simulation software to optimize the cutting structure design. The paper demonstrates the improvement in the deep gas fields in Saudi Arabia by comparing the performance of the most recent wells, in which the new technologies were implemented, to the earlier wells to illustrate the significant time and drilling cost reduction.
机译:钻入沙特阿拉伯的深气田中的中间部分是具有挑战性的,因为具有涉及空调的硬碳酸盐(石灰石和白云石)组成的长而复杂的地质序列。从历史上看,主要操作员试图使用滚子锥形碳化物(TCI)和多晶体紧凑型(PDC)技术钻探该截面。与TCI比特相比,PDC位提供更好的穿透速率和耐用性。然而,需要几个PDC位来钻出该部分,这增加了钻孔和跳闸以相对深的间隔所需的时间。当孔为长时间开放时,增加的时间暴露了良好的风险。进一步分析和系统比特优化过程,创建并使用了三个新的PDC位设计,这在两个深气田中建立了新的基准。通过提高PDC比特性能和比特耐久性来实现最小化位频率的目的,以钻取更长的渗透率,需要新的PDC比特技术与优化的电动机驱动。为解决挑战,运营商,位供应商和其他服务公司共同努力,开发一个优化的解决方案来钻取这些部分。本文审查了钻探中间部分在挑战深气田中的中间部分的研究结果。该研究表明,PDC位损坏遇到更难的桁条是实现更好性能的主要障碍。通过实施新的刀具技术和钻井仿真软件来克服障碍,以优化切割结构设计。本文通过比较了最近井的性能,在较早的井上进行了比较了最近的井的性能,展示了新技术的性能,以说明较早的时间和钻井成本降低,通过比较最近的井的性能来改善沙特阿拉伯的性能。

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