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首页> 外文期刊>Journal of Petroleum Science & Engineering >A model for annular displacements of wellbore completion fluids involving casing movement
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A model for annular displacements of wellbore completion fluids involving casing movement

机译:涉及套管运动的井筒完井液环形驱替模型

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This paper presents a mathematical and a numerical model for solving the flow and displacement of completion fluids in the annular space formed by the gap between the outer wall of the casing and the rock face. Such flows occur during mud circulation and cementing operations and may involve casing rotation and reciprocation. Most completion fluids have a shear-dependent apparent viscosity. Additionally, muds and cement slurries often exhibit a yield stress and a gel strength. The displacement patterns and the final placement of the cement depend on injection rate and casing movement histories, rheology contrasts, density contrasts as well as the actual shape and orientation of the annular space which may vary along the wellbore axis. All the above listed phenomena are included in the model. The mathematical model is derived using the lubrication approach and the narrow-slot approximation for the momentum balance equations. These methods provide a (2 + 1)D-averaged model where the radial dimension is not neglected but averaged across the gap. The numerical model is developed in the goal of minimizing computational time. It takes advantage of multiprocessor architectures, first to pre-compute the closure equations linking local flow velocity to local pressure gradient, prior to running the displacement simulation, and second, to solve the non-linear pressure equation by sampling multiple choices of relaxation parameters. (C) 2014 Elsevier BM. All rights reserved.
机译:本文提出了一个数学和数值模型,用于解决完井液在由套管外壁和岩壁之间的间隙形成的环形空间中的流动和位移。这样的流动发生在泥浆循环和固井作业期间,并且可能涉及套管旋转和往复运动。大多数完井液具有与剪切有关的表观粘度。另外,泥浆和水泥浆通常表现出屈服应力和凝胶强度。水泥的位移模式和最终位置取决于注入速率和套管运动历史,流变学对比,密度对比以及环形空间的实际形状和方向,这些形状和方向可能沿井眼轴变化。以上列出的所有现象均包含在模型中。使用润滑方法和动量平衡方程的窄缝近似推导数学模型。这些方法提供了(2 +1)D平均模型,其中径向尺寸未被忽略,而是在整个间隙中平均。数值模型的开发旨在最大限度地减少计算时间。它利用多处理器体系结构的优势,首先在运行位移模拟之前预先计算将局部流速与局部压力梯度相关联的闭合方程,其次通过对多种松弛参数进行采样来求解非线性压力方程。 (C)2014 Elsevier BM。版权所有。

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