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作 者:孙晓峰[1] 闫铁[1] 崔世铭[2] 唐生[3] 王克林[1]
机构地区:[1]东北石油大学石油工程学院,黑龙江大庆163318 [2]中国石油吉林油田公司新木采油厂,吉林松原138000 [3]中国石油大庆油田有限责任公司第五采油厂,黑龙江大庆163513
出 处:《断块油气田》2014年第1期92-96,共5页Fault-Block Oil & Gas Field
基 金:国家自然科学基金项目"钻柱旋转作用的大位移井环空岩屑运移机制研究"(51204056);国家科技重大专项课题"复杂结构井优化设计与控制关键技术"(2011ZX05009-005)
摘 要:为了研究钻杆旋转对复杂结构井大斜度井段环空岩屑分布状态的影响规律和钻井液-岩屑两相流动压降的变化规律,应用三维建模软件建立了复杂结构井大斜度井段物理模型,应用CFD动网格运动模型模拟钻杆在环空的旋转效果,流动域内采用Realizable涡黏模型近似求解钻井液-岩屑两相纳维-斯托克斯方程。模拟结果显示,钻杆旋转作用使岩屑沿井眼周向呈非对称状分布,钻杆旋转能够提高钻井液对岩屑沿切向的拖曳程度,显著提高了井眼清洁效果。根据CFD数值模拟结果,应用最小二乘法,结合Buckingham-π定理,建立了岩屑床比面积模型和环空压降计算模型。In order to study the distribution of cuttings in annulus and pressure drop of cuttings and drilling fluid two-phase flow in high angle section of complex structural wells, 3D model of highly inclined sections of complex structural well is established and CFD dynamic grid technique is used to simulate the rotary effect of drillpipe. Realizable viscous model is adopted to calculate Navier-Stokes equation of cuttings and drilling fluid two-phase flow. The simulation results show that drillpipe rotation makes the cuttings asymmetrically distribute along the wellbore circumference, and improves the drag effect of drilling fluid in the tangential speed, which significantly enhances hole cleaning efficiency. Based on the numerical simulation results of CFD and combined with Buckingham-'n" theorem, least square method is applied to establish the empirical correlations for estimating the ratio of cuttings bed area and wellbore area and the annular pressure drop.
分 类 号:TE21[石油与天然气工程—油气井工程]
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