Molecular Insights into the High Temperature Resistance Mechanism of Anionic Copolymers with Cyclic Side Groups as a Filtration Control Additive in Water-Based Drilling Fluids

Author:

Wang Xiaohui,Li Hangyu,Geng Yuan,Zhang Zhilei,Yan Zhiyuan,Hu Min,Huang Xianbing,Qi Yingxiang,Xu Jiafang

Publisher

Elsevier BV

Reference35 articles.

1. The consequences of using concentrated salt solutions for mitigating wellbore instability in shales;M T Al-Bazali;J Petrol Sci Eng,2011

2. Analysis of wellbore instability in vertical, directional, and horizontal wells using field data;M Mohiuddin;J Petrol Sci Eng,2006

3. On the physical and chemical stability of shales;V E Oort;J Petrol Sci Eng,2003

4. Effective Modified Xanthan Gum Fluid Loss Agent for High-Temperature Water-Based Drilling Fluid and the Filtration Control Mechanism;W Zhu;ACS omega,2021

5. Laponite-polymer composite as a rheology modifier and filtration loss reducer for water-based drilling fluids at high temperature;J Yang;Colloid Surf. A-Physicochem. Eng. Asp,2022

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