NUMERICAL SIMULATION OF DRILLING FLUID BEHAVIOR IN DIFFERENT DEPTHS OF AN OIL WELL

A. F. C. Gomes, J. G. O. Marinho, J. L. L. Santos
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引用次数: 2

Abstract

When drilling an oil well, a viscous fluid is injected to aid drilling. This fluid is also responsible for removing the cuttings and maintaining structural stability of well. The rheology of this drilling fluid has a direct influence on the cleaning of the well, on the dynamics of the fluid in pipe and annular areas. Linear mathematical extrapolations for high pressure and high temperature environments can lead to rheology errors up to 75%. In this study, a finite volume model was developed to simulate the flow of a water-based mud in annular and jetting environments in the drilling environment. Annulars were made by steel pipes and permeable formations. The fluids evaluated were developed empirically with xanthan gum and bentonite clay. The numerical results are consistent with literature and represent characteristics of a Yield Power Law fluid and a Bingham plastic. A comparison was made with water, allowing a correlation between rheological effects and fluid dynamics in annular and high vorticity regions.
油井不同深度下钻井液特性的数值模拟
钻井时,注入一种粘性流体以帮助钻井。该流体还具有清除岩屑和保持井结构稳定性的作用。这种钻井液的流变性直接影响到井的清洁,以及管道和环空区域流体的动力学。高压和高温环境的线性数学外推可能导致流变误差高达75%。在这项研究中,建立了一个有限体积模型来模拟水基泥浆在环空和喷射环境中的流动。环管是由钢管和渗透性地层制成的。以黄原胶和膨润土为原料,进行了试验研究。数值结果与文献一致,反映了屈服幂律流体和宾汉姆塑性的特性。与水进行了比较,允许在环形和高涡度区域的流变效应和流体动力学之间存在相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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