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Cover image for Practical Nanotechnology for Petroleum Engineers
Title:
Practical Nanotechnology for Petroleum Engineers
Personal Author:
Physical Description:
xvi, 349 pages : illustrations ; 25 cm.
ISBN:
9780815381495
Abstract:
This book is a concise but well-organized introduction to nanotechnology (NT) which the upstream oil industry is now vigorously adapting to develop its own unique applications for improved oilfield operations and, oil and gas production. Its reader will learn nanotechnology fundamentals, be introduced to important NT products and applications from other industries and learn about the current state of development of various NT applications in the upstream oil industry, which include innovative use of nanoparticles for enhanced oil recovery; drilling and completions; reservoir sensing; and production operations and flow assurance

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30000010370012 TN871.27 H84 2019 Open Access Book Book
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Summary

Summary

This book is a concise but well-organized introduction to nanotechnology (NT) which the upstream oil industry is now vigorously adapting to develop its own unique applications for improved oilfield operations and, oil and gas production. Its reader will learn nanotechnology fundamentals, be introduced to important NT products and applications from other industries and learn about the current state of development of various NT applications in the upstream oil industry, which include innovative use of nanoparticles for enhanced oil recovery; drilling and completions; reservoir sensing; and production operations and flow assurance.

Key Features

Exclusive title on potential of nanoparticle-based agents and interventions for improving myriad of oilfield operations Unique guide for nanotechnology applications developers and users for oil and gas production Introduces nanotechnology for oil and gas managers and engineers Includes research data discussions relevant to field Offers a practical applications-oriented approach


Author Notes

Prof. Chun Huhis one of the world's leading experts on surfactant- and polymer-based enhanced oil recovery (EOR) methods. "Chun Huh equation," which predicts ultralow interfacial tension from microemulsion solubilization, is widely used for the design of surfactant-based EOR processes. He is also the formulator of "Huh-Scriven paradox," whose resolution is still being proposed by fluid mechanics researchers working on dynamics of wetting. Since joining UT Austin in 2004, Dr. Huh has started research on use of nanoparticles for a variety of upstream oil industry applications. Some of the applications being developed are: use of superparamagnetic nanoparticles (i) for efficient removal of "contaminants" from oilfield produced water, (ii) for improved oil and gas production flow assurance, and (iii) for precision conformance control; and use of silica nanoparticles for EOR mobility control.

Prof. Masa Prodanovic , Dept. of Petroleum & Geosystems Engineering, University of Texas at Austin.

 

Prof. Hugh Daigle , Dept. of Petroleum & Geosystems Engineering, University of Texas at Austin.

 

Prof. Valentina Prigiobbe , Dept. of Civil, Environmental & Ocean Engineering, Stevens Inst. of Technology.


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