Influence of nanoclay content on cement matrix for oilwells subjected to cyclic steam injection
DOI: 10.3390/ma12091452
New Model for Pore Pressure Prediction While Drilling Using Artificial Neural Networks
Comparative analysis of artificial intelligence techniques for formation pressure prediction while drilling
New artificial neural networks model for predicting rate of penetration in deep shale formation
DOI: 10.3390/su11226527
The effect of weighting materials on oil-well cement properties while drilling deep wells
DOI: 10.3390/su11236776
Application of Artificial Intelligence Techniques in Predicting the Lost Circulation Zones Using Drilling Sensors
DOI: 10.1155/2020/8851065
A novel solution for severe loss prevention while drilling deep wells
DOI: 10.3390/su12041339
Deep Illustration for Loss of Circulation While Drilling
Improving Saudi class G oil-well cement properties using the tire waste material
Influence of weighting materials on the properties of oil-well cement
The use of the granite waste material as an alternative for silica flour in oil-well cementing
Fracture Pressure Prediction Using Surface Drilling Parameters by Artificial Intelligence Techniques
DOI: 10.1115/1.4049125
Effect of perlite particles on the properties of oil-well class G cement
Minimizing the Barite Scale in Carbonate Formations during the Filter Cake Removal Process
Curing Time Impacts on the Mechanical and Petrophysical Properties of a Laponite-Based Oil Well Cement
Evaluation of hematite and Micromax-based cement systems for high- density well cementing
The Combined Effect of Nanoclay Powder and Curing Time on the Properties of Class G Cement
DOI: 10.1155/2023/7316335
Analysis of the Impact of Vermiculite on Hematite-Based Cement Systems
The effect of polypropylene fiber on the curing time of class G oil well cement and its mechanical, petrophysical, and elastic properties
Deep characterization of heavy-weighted oil well cement segregation by a novel nuclear magnetic resonance (NMR) technique
Utilization of vermiculite particles in the enhancement of the ilmenite based oil well cement properties
Minimizing the particles settling of ilmenite weighted oil well cement using laponite
Synthetic Clay Application to Reduce the Segregation of Barite-Based Oil-Well Cement
Investigation of the Impact of Vermiculite on the Properties of Barite-Based Oil Well Cement
Enhancing the properties of high-density oil well cement with Qusaiba kaolinite
Investigating the effect of perlite particles on ilmenite-based oil well cement
A study of a new polymeric retarder for enhanced rheology and its effects on properties of oil well cement
Application of Qusaiba Kaolinite Clays as Secondary Cementitious Material in Oil Well Cementing
Utilizing Saudi volcanic scoria in lightweight geopolymer for enhanced wellbore cementing