AN EXPERIMENTAL MODEL TO PREDICT AND CONTROL OILFIELD EMULSION TIGHTNESS: A NOVEL APPROACH

You have 10 free previews remaining
Previews reset on: Oct 31, 2025
Preview attempts remaining: 10 10 remaining

📄 Project Abstract

Formation of water-in-oil emulsions are among the major challenges encountered by production and surface facilities engineers during the recovery of crude oil, especially in a large multi-wells system in both onshore and offshore oilfields. The development of systematic approaches to handle emulsion problem has been very slow. Several important aspects of emulsion that have not being studied extensively to date include mechanism, kinetics and energy levels associated with emulsion formation. Such information is needed to understand the emulsification process, model it and hence solve lots of operational and economical emulsion issues. This study presents a novel experimental approach to model the process of water-in-oil emulsion formation and also study the shearing energy levels associated with its formation. Oilfield emulsions were simulated using agitator rated between 0 to 1000 RPM. Mixture of crude oil, formation water, asphaltene, inorganic solid, scale precipitates and reservoir...

🔍 Key Research Areas Covered
  • ✅ Literature Review & Theoretical Framework
  • ✅ Research Methodology & Data Collection
  • ✅ Data Analysis & Statistical Methods
  • ✅ Findings & Results Discussion
  • ✅ Recommendations & Conclusions
  • ✅ References & Bibliography
📚 Complete Project Structure
Chapter 1: Introduction & Background
  • Problem Statement & Objectives
Chapter 2: Literature Review
  • Theoretical Framework & Related Studies
Chapter 3: Research Methodology
  • Data Collection & Analysis Methods
Chapter 4: Data Analysis & Results
  • Findings & Statistical Analysis
Chapter 5: Discussion & Conclusion
  • Recommendations & Future Research
Appendices: Supporting Documents
  • Questionnaires, Data, References
⭐ Why Choose This Petroleum Engineering Project Topics Project?
🎯 Well-Researched

Thoroughly researched with current and relevant sources

📊 Complete Data

Includes statistical analysis and detailed findings

✍️ Original Content

100% original research with proper citations

📝 Properly Formatted

APA/MLA formatting with table of contents

🎓 Supervisor Approved

Meets university standards and requirements

⚡ Instant Download

Immediate access after purchase

💬 What Students Say

"This project provided excellent guidance for my Petroleum Engineering Project Topics research. The methodology was clear and the data analysis helped me understand the proper approach."

— Final Year Student, Engineering and Technology project topics
Full Citation:

ADEKUNLE, OPAWALE. (). AN EXPERIMENTAL MODEL TO PREDICT AND CONTROL OILFIELD EMULSION TIGHTNESS: A NOVEL APPROACH. African and General Studies, 40, 14858.

Citation Formats:
APA
ADEKUNLE, OPAWALE. (). AN EXPERIMENTAL MODEL TO PREDICT AND CONTROL OILFIELD EMULSION TIGHTNESS: A NOVEL APPROACH. African and General Studies, 40, 14858.
MLA
ADEKUNLE, OPAWALE. "AN EXPERIMENTAL MODEL TO PREDICT AND CONTROL OILFIELD EMULSION TIGHTNESS: A NOVEL APPROACH." African and General Studies, vol. 40, , pp. 14858.
Chicago
ADEKUNLE, OPAWALE. "AN EXPERIMENTAL MODEL TO PREDICT AND CONTROL OILFIELD EMULSION TIGHTNESS: A NOVEL APPROACH." African and General Studies 40 (): 14858.
Full Citation:

ADEKUNLE, OPAWALE. (). AN EXPERIMENTAL MODEL TO PREDICT AND CONTROL OILFIELD EMULSION TIGHTNESS: A NOVEL APPROACH. African and General Studies, 40, 14858.

Citation Formats:
APA
ADEKUNLE, OPAWALE. (). AN EXPERIMENTAL MODEL TO PREDICT AND CONTROL OILFIELD EMULSION TIGHTNESS: A NOVEL APPROACH. African and General Studies, 40, 14858.
MLA
ADEKUNLE, OPAWALE. "AN EXPERIMENTAL MODEL TO PREDICT AND CONTROL OILFIELD EMULSION TIGHTNESS: A NOVEL APPROACH." African and General Studies, vol. 40, , pp. 14858.
Chicago
ADEKUNLE, OPAWALE. "AN EXPERIMENTAL MODEL TO PREDICT AND CONTROL OILFIELD EMULSION TIGHTNESS: A NOVEL APPROACH." African and General Studies 40 (): 14858.
Need Help?