Dynamic buckling of columns inside oil wells / by Marcelo Anunciação Jaculli, José Ricardo Pelaquim Mendes.
2018
TJ163.13-163.25
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Title
Dynamic buckling of columns inside oil wells / by Marcelo Anunciação Jaculli, José Ricardo Pelaquim Mendes.
ISBN
3319912089
9783319912080
9783319912073
3319912070
9783319912080
9783319912073
3319912070
Publication Details
Springer International Publishing.
Published
Cham Springer International Publishing Imprint: Springer, 2018.
Language
English
Description
1 online resource (xiii, 91 pages 41) : illustrations.
Item Number
10.1007/978-3-319-91208-0 doi
Call Number
TJ163.13-163.25
Dewey Decimal Classification
662.6
Summary
This book introduces the underlying concepts of column dynamics and buckling, based on the latest state-of-the-art research on this innovative topic. It begins with a summary of the basic concepts behind column dynamics and buckling, before moving on to the models for studying dynamic buckling inside oil wells. Four models with increasing complexity are presented: columns without friction; columns with friction; columns inside slant wells; and columns inside offshore wells. Each model is divided into two cases, depending on whether the column is being tripped in or out. A case study is used to demonstrate these models and is further developed as each model is presented and explained. The results include comparisons between the models themselves, thus showing the implications of the adopted hypotheses of each. This book enables academic, industrial, and graduate student readers to fully understand the fundamentals of dynamic buckling and to further develop the presented models for their own research.
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Digital File Characteristics
text file PDF
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Series
SpringerBriefs in Petroleum Geoscience & Engineering.
Available in Other Form
3319912070
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Table of Contents
Introduction
Fundamentals on Column Dynamics
Models for Dynamic Column Buckling
Final Remarks
Appendix: Deduction of Motion Equations.
Fundamentals on Column Dynamics
Models for Dynamic Column Buckling
Final Remarks
Appendix: Deduction of Motion Equations.