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NUMERICAL SIMULATION RESEARCH ON THE SPIRAL VELOCITY DISTRIBUTION OF HERSCHEL-BULKLEY FLUID IN ECCENTRIC ANNULAR USING IN OIL AND GAS DEVELOPMENT

机译:石油和天然气开发偏心环形偏心环螺旋速度分布的数值模拟研究

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In the drilling and production process of the petroleum industry,the research on the flow of nonNewtonian fluids in eccentric annulus is of great significance.At present,drilling fluids are mainly based on Bingham fluids and power law fluids.However,the research on the distribution law of the spiral flow velocity field of eccentric annulus H-B fluid is insufficient.Based on the actual situation of drilling fluid flowing between drill pipe and casing in eccentric annulus,a physical model of eccentric annulus with different eccentricity is established through CREO three-dimensional modeling software,and the eccentric annulus is analyzed.The control equation and solution method of the Herschel-Bulkley (H-B) fluid spiral flow are simulated and analyzed by ANSYS fluid analysis software.Through numerical simulation analysis,it is concluded that due to the eccentricity,the wide gap in the eccentric annular spiral flow field will form a turbulent constant velocity flow area,and there will be a low-speed flow area around the narrow gap.The greater the deviation angle of the spiral flow field,the more uneven the flow field velocity distribution,which is not conducive to the migration of drilling cuttings.The deviation angle of the spiral flow field gradually increases with the increase of drill pipe speed,annulus eccentricity,and drilling fluid fluidity index,and gradually decreases with the increase of annulus flow velocity.The consistency coefficient of drilling fluid and dynamic shear force has no effect on the deviation angle of the spiral flow field.
机译:在石油工业的钻井和生产过程中,对偏心环下的非诺士利亚流体流动的研究具有重要意义。目前,钻井液主要基于宾厄姆流体和动力法流体。无论何种,都是对分布的研究偏心环HB流体的螺旋流速领域的规律不足。通过Creo三维建模建立了诸如诸如偏心环的钻孔管和壳体之间流动的钻孔流体的实际情况。通过Creo三维建模建立了不同偏心的偏心环的物理模型软件和偏心环设置。通过ANSYS流体分析软件模拟和分析Herschel-Bulkley(HB)流体螺旋流量的控制方程和解决方法。通过数值模拟分析,它被告知,由于偏心,偏心环形螺旋流场中的宽间隙将形成湍流恒定速度流量区域,并且将存在一个狭窄间隙周围的低速流动区域。螺旋流场的偏差角越大,流场速度分布越不明,这不利于钻孔切割的迁移。螺旋流场的逐渐偏移随着钻孔管速度,环形偏心和钻孔流体流动性指数的增加而增加,随着环流速的增加逐渐降低。钻井液和动态剪切力的一致性系数对螺旋流的偏差角没有影响场地。

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