Casing Design - Theory and Practice
Casing design has followed an evolutionary trend and most improvements have been made due to the advancement of technology. Contributions to the technology in casing design have come from fundamental research and field tests, which have made casing safe and economical. This book gathers together much available information in the subject area and shows how it may be used in deciding the best procedure for casing design i.e. optimizing casing design for deriving maximum profit from a particular well. The problems and their solutions, which are provided in each chapter, and the computer program (3.5 in. disk) are intended to serve two purposes:- firstly, as illustrations for students and practicing engineers to understand the subject matter, and secondly, to enable them to optimize casing design for a wide range of wells to be drilled in the future.
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CHAPTER 3 PRINCIPLES OF CASING DESIGN
CHAPTER 4 CASING DESIGN FOR SPECIAL APPLICATIONS
CHAPTER 5 COMPUTERAIDED CASING DESIGN
CHAPTER 6 AN INTRODUCTION TO CORROSION AND PROTECTION OF CASING
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annulus anodic API Bul Apsi axial force axial load axial stress bending borehole friction factor buildup section buoyant weight burst loads burst pressure calculated cathodic cathodic protection cement sheath Clausthal collapse and burst collapse pressure collapse resistance collapse strength combination casing string compressive corrosion coupling CYSS5 DENSITY DESIGN METHOD diameter do/t drilling fluid effect elastic equation Example external pressure FACTORS FOR BURST formation fracture gradient FT DESIGN FACTOR FT MEASURED DEPTH Goetzen GRADE CODE heat hole intermediate internal lb/ft lb/gal liner Maidla metal minimum cost modulus plastic Poisson's ratio pressure gradient PRICE LIST production production tubing psi/ft safety factor setting depth shock load specific weight steam steel grades Table tangential stresses temperature tensile tensile stress tensional load thermal thread TRUE VERTICAL DEPTH tubing U.S. DOLLARS yield strength yield stress