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首页> 外文期刊>European Journal of Applied Mathematics >Transient effects in oilfield cementing flows: Qualitative behaviour
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Transient effects in oilfield cementing flows: Qualitative behaviour

机译:油田固井流动的瞬态效应:定性行为

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We present an unsteady Hele-Shaw model of the fluid-fluid displacements that take place during primary cementing of an oil well, focusing on the case where one Herschel-Bulkley fluid displaces another along a long uniform section of the annulus. Such unsteady models consist of an advection equation for a fluid concentration field coupled to a third-order non-linear PDE (Partial differential equation) for the stream function, with a free boundary at the boundary of regions of stagnant fluid. These models, although complex, are necessary for the study of interfacial instability and the effects of flow pulsation, and remain considerably simpler and more efficient than computationally solving three-dimensional Navier-Stokes type models. Using methods from gradient flows, we demonstrate that our unsteady evolution equation for the stream function has a unique solution. The solution is continuous with respect to variations in the model physical data and will decay exponentially to a steady-state distribution if the data do not change with time. In the event that density differences between the fluids are small and that the fluids have a yield stress, then if the flow rate is decreased suddenly to zero, the stream function (hence velocity) decays to zero in a finite time. We verify these decay properties, using a numerical solution. We then use the numerical solution to study the effects of pulsating the flow rate on a typical displacement.
机译:我们介绍了油井初次固井过程中发生的非定常Hele-Shaw模型,重点研究了一种Herschel-Bulkley流体沿环形长均匀段驱替另一种流体的情况。这种非定常模型包括一个流体浓度场的对流方程,该方程与流函数的三阶非线性PDE(偏微分方程)耦合,在停滞流体区域的边界处具有自由边界。这些模型虽然复杂,但是对于研究界面不稳定性和流动脉动的影响是必需的,并且比计算求解三维Navier-Stokes型模型要简单得多,而且效率更高。使用来自梯度流的方法,我们证明了针对流函数的非定常演化方程具有唯一的解决方案。对于模型物理数据的变化,该解决方案是连续的,如果数据不随时间变化,则该解决方案将呈指数衰减至稳态分布。如果流体之间的密度差很小,并且流体具有屈服应力,则如果流量突然减小到零,则流函数(因此速度)会在有限的时间内衰减为零。我们使用数值解验证了这些衰减特性。然后,我们使用数值解来研究脉动流速对典型位移的影响。

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