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Performance Improvement: New 16-in. TCI Design Addresses Multiple Drilling Challenges Through Interbedded Shale and Carbonate Application

机译:绩效改进:新的16-IN。 TCI设计通过冰袋和碳酸盐应用来解决多种钻孔挑战

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A 16-in. section is one of the most challenging sections to drill in southeast Kuwait. The section consists primarily of highly interbedded carbonates, anhydrites, shale, and marl intervals, with significant variations in compressive strength that range from 3 to 25 kpsi. There are potential loss of circulation zones in the Tayarat and Dammam formations, which complicates the drilling performance, required flow rate, and other drilling parameters to be controlled. Bit balling of the cutting structure was expected in some intervals where water-based mud was typically used. The drilling assembly was a pendulum rotary design for vertical wells. A positive displacement motor (PDM) assembly is typically used in directional wells. In addition to the loss potential and long section interval, insufficient hydraulics and the high weight on bit (WOB) necessary in the Dammam to Ahmadi carbonates led to the premature failure of the cutting structure and bearings. A durable and reliable bit design was needed to drill the entire interval and the subsequent well to help reduce overall drilling costs. Collaboration between the operator’s drilling team and the bit supplier team resulted in successfully drilling a challenging 16-in. section and multiple additional wells. Rock types, performance, and compressive strength were analyzed using an advanced software program to determine the required design changes to develop the new tungsten carbide insert (TCI) bit. The goal of the new design was to improve hydraulics configurations, create durable and robust rubber seals, and design new advanced cutting structure materials. The new bit design provided exceptional performance in multiple wells in the 16-in. section in southeast Kuwait. The bit was used to drill three wells, with a cumulative footage of more than 9,000 ft in more than 240 drilling hours. Approximately two million revolutions were achieved with effective bearings and slight normal wear to the bit cutting structure elements. The new bit design helped to drill longer intervals and multiple wells with no risk of premature failure; it also helped to reduce drilling time and bit costs. A further test was implemented in directional drilling wells where the inclination was up to 50°.
机译:一个16英寸。科是在东南科威特钻的最具挑战性部分之一。该部分主要包括高度冰酸碳酸盐,无水石,页岩和MARL间隔,具有显着变化的抗压强度,其范围为3至25kpsi。 Tayarat和Dammam地层中存在循环区域的潜在损失,使钻井性能,所需的流速和其他钻孔参数复杂化。预期在通常使用水基泥浆的某些间隔中预期切割结构的钻头球。钻井组件是用于垂直孔的摆旋转设计。正排量电动机(PDM)组件通常用于方向孔。除了损耗电位和长段间隔外,液压装置不足和达米法中必需的钻头(WOB)对Ahmadi碳酸酯的高重量导致切割结构和轴承的过早失效。需要一种耐用可靠的位设计来钻取整个间隔和随后的良好,以帮助减少整体钻井成本。操作员的钻井团队与Bit供应商团队之间的合作导致成功钻取了16英寸的具有挑战性。部分和多个额外的井。使用先进的软件程序分析岩体类型,性能和压缩强度,以确定所需的设计变更,以开发新的碳化钨插入(TCI)位。新设计的目标是改善液压配置,采用耐用且坚固的橡胶密封,设计新的先进切割结构材料。新位设计在16-IN中提供了多个井中的卓越性能。科威特东南部的部分。该钻头用于钻孔三个井,累积镜头超过9,000英尺在240多小时。通过有效的轴承和钻头切割结构元件的略微正常磨损,实现了大约200万次旋转。新位设计有助于钻取更长的间隔和多个井,没有过早失效的风险;它还有助于降低钻井时间和比特成本。进一步的测试在方向钻井井中实施,其中倾斜度高达50°。

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