Coring Methods and Systems

Nonfiction, Science & Nature, Science, Physics, Energy, Earth Sciences, Technology
Cover of the book Coring Methods and Systems by Rahman Ashena, Gerhard Thonhauser, Springer International Publishing
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Author: Rahman Ashena, Gerhard Thonhauser ISBN: 9783319777337
Publisher: Springer International Publishing Publication: May 2, 2018
Imprint: Springer Language: English
Author: Rahman Ashena, Gerhard Thonhauser
ISBN: 9783319777337
Publisher: Springer International Publishing
Publication: May 2, 2018
Imprint: Springer
Language: English

This book is a practical guide to downhole rock sampling and coring concepts, methods, systems, and procedures for practitioners and researchers. Its chapters are based upon years of extensive studies and research about the coring methods and via direct and continuous communication and consultation obtained from various service and operator companies such as Baker Hughes GE, NOV, OMV, and Sandvik.

The contributors discuss the state-of-the-art coring methods and systems (mainly used in the petroleum industry), which include:

 

·         conventional coring;

·         wireline continuous coring;

·         invasion mitigation coring (low invasion, gel coring, sponge coring);

·         jam-detection, anti-jamming, full closure;

·         safe-coring and tripping;

·         oriented-coring;

·         pressure/in-situ coring;

·         logging-while-coring;

·         motor coring;

·         mini-coring;

·         coiled Tubing Coring; and

·         underbalanced coring.

 

The contributors provide practical and applicable understanding of the procedures of these coring methods and systems, as well as the specific core barrel components, working mechanisms, and schematics of the tools and processes used.   Because Coring Methods and Systems analyses and compares the core barrels used in both petroleum and mining industries, it enhances the communication and may allow knowledge transfer between the two industries.

 

As core damage is a serious issue during coring and handling jeopardizing correct calibration of exploration data, Coring Methods and Systems has greatly focused on its identification and its mitigation. Therefore, it can be used as an ideal source for geologists, core analysts, and reservoir engineers, to ensure the retrieval of high-quality cores. 

 

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book is a practical guide to downhole rock sampling and coring concepts, methods, systems, and procedures for practitioners and researchers. Its chapters are based upon years of extensive studies and research about the coring methods and via direct and continuous communication and consultation obtained from various service and operator companies such as Baker Hughes GE, NOV, OMV, and Sandvik.

The contributors discuss the state-of-the-art coring methods and systems (mainly used in the petroleum industry), which include:

 

·         conventional coring;

·         wireline continuous coring;

·         invasion mitigation coring (low invasion, gel coring, sponge coring);

·         jam-detection, anti-jamming, full closure;

·         safe-coring and tripping;

·         oriented-coring;

·         pressure/in-situ coring;

·         logging-while-coring;

·         motor coring;

·         mini-coring;

·         coiled Tubing Coring; and

·         underbalanced coring.

 

The contributors provide practical and applicable understanding of the procedures of these coring methods and systems, as well as the specific core barrel components, working mechanisms, and schematics of the tools and processes used.   Because Coring Methods and Systems analyses and compares the core barrels used in both petroleum and mining industries, it enhances the communication and may allow knowledge transfer between the two industries.

 

As core damage is a serious issue during coring and handling jeopardizing correct calibration of exploration data, Coring Methods and Systems has greatly focused on its identification and its mitigation. Therefore, it can be used as an ideal source for geologists, core analysts, and reservoir engineers, to ensure the retrieval of high-quality cores. 

 

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