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BHA and Drillstring Modeling Maximizes Drilling Performance in Lateral Wells of Barnett Shale Gas Field of N. Texas

机译:BHA和钻石型造型最大限度地提高了N.Dexas的Barnett Shale Gas领域的横向井中的钻井性能

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The Barnett Shale field of North Texas is one of the mos prolific and fastest growing natural gas fields in North America with a multi-trillion cubic feet equivalent upside potential. However, the area presents numerous drilling challenges. In the vertical section, roller cone bits had unacceptable low penetration rates while PDC bits suffered premature damage. High torque and drag along with low penetration rates hampered drilling the curve and lateral sections. To address these challenges, a detailed engineering analysis was performed utilizing sophisticated BHA and drill string modeling software. Engineers studied offset wells and drillstring modeling including buckling load analysis, critical speed analysis, and torque and drag analysis. As a result of the study, engineers determined that bit whirl and stick-slip were resulting in premature bit damage and reduced ROP while drillstring buckling resulted in inefficient transfer of weight on bit. Modeling helped design a BHA that mitigated buckling while optimized drilling parameters avoided critical speeds. The improvements resulted in 42 percent to 121 percent higher penetration rates with minimal damage to the PDC bits. The 8- 3/4 in vertical section was drilled in one PDC run in 60 out of 104 wells resulting in significant reduction in rotating hours and average cost per foot. The new BHA reduced drillstring buckling and significantly reduced torque and drag while drilling the curve and lateral sections. The authors will describe the significance of applying principles of buckling load and torque and drag analysis; to design technically sound BHA's. They will also discuss how to utilize drillstring dynamics to avoid critical speeds.
机译:北德克萨斯州的Barnett Shale领域是北美的MOS多产,最快的天然气领域之一,具有多亿立方英尺等效的上行潜力。然而,该地区呈现众多钻探挑战。在垂直部分中,滚子锥位具有不可接受的低穿透速率,而PDC位损坏过早。高扭矩和拖拽以及低穿透速率妨碍钻孔曲线和侧面部分。为了解决这些挑战,使用复杂的BHA和钻串建模软件进行详细的工程分析。工程师研究了偏移井和钻孔建模,包括屈曲负荷分析,临界速度分析和扭矩和拖曳分析。由于研究的结果,工程师确定了旋转旋转和粘滑,导致钻头弯曲导致钻头弯曲的速度损坏和减少速度。建模有助于设计一个缓解屈曲的BHA,而优化的钻探参数避免了临界速度。改善导致了42%至121%的渗透率,对PDC比特的损坏最小。在104个孔中的60个中的一个PDC中钻出垂直部分的8-3/4,导致旋转小时数显着降低和每只脚的平均成本。新的BHA减少钻孔弯曲,并在钻曲线和横向部分的同时显着降低扭矩和拖动。作者将描述应用屈曲负荷和扭矩和拖曳分析的原理的重要性;设计技术上听起来。他们还将讨论如何利用钻机动力学来避免临界速度。

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