Study of Retention of Drilling Fluid Layer on Annulus Wall during Cementing

Processes Pub Date : 2024-06-07 DOI:10.3390/pr12061176
Zhiqiang Wu, Zehua Chen, Chengwen Wang
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Abstract

To guarantee that the cement sheath has a sealing effect, it is best to replace the drilling fluid entirely and fill the annulus with cement slurry throughout the cementing process. A significant driving power and high stability at the interface between the cement slurry and drilling fluid are often necessary for achieving a high displacement efficiency. It is important that a comprehensive theoretical characterization is established on the thickness and location of drilling fluid retention and the conditions to prevent the formation of drilling fluid retention. In this study, firstly, the characteristics of annulus fluid shear stress distribution are analyzed by establishing the differential equation of shear stress distribution. Subsequently, the calculation model of the drilling fluid retention layer’s thickness is constructed. Subsequently, the impact of cement slurry and drilling fluid properties, eccentricity of the casing, and additional variables on the annular wall’s drilling fluid retention thickness are scrutinized. The quantitative conditions for preventing drilling fluid retention are also analyzed (i.e., Equation (23)). Based on the newly developed model, a case study is conducted to show the significance of the new model. This offers a theoretical foundation for enhancing cement injection displacement efficiency and cementing performance optimization.
固井过程中钻井液层在井壁上的滞留研究
为保证水泥护套的密封效果,最好在整个固井过程中完全更换钻井液,并用水泥浆填充环空。要获得较高的位移效率,通常需要水泥浆和钻井液界面具有较大的驱动力和较高的稳定性。对钻井液潴留的厚度、位置以及防止钻井液潴留形成的条件进行全面的理论描述非常重要。本研究首先通过建立切应力分布微分方程,分析了环空流体切应力分布特征。随后,构建了钻井液潴留层厚度的计算模型。随后,研究了水泥浆和钻井液性能、套管偏心率以及其他变量对环形壁钻井液滞留层厚度的影响。还分析了防止钻井液滞留的定量条件(即公式 (23))。根据新开发的模型,进行了案例研究,以说明新模型的意义。这为提高水泥注入位移效率和优化固井性能提供了理论基础。
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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