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Physics and mechanics of primary well cementing

Author: Alexandre Lavrov; Malin Torsæter
Publisher: Switzerland : Springer, [2016] ©2016
Series: SpringerBriefs in petroleum geoscience & engineering.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
"This book covers the major physical and mechanical processes that unfold during cementing and subsequent well service, and which can affect the well integrity. Focusing on the underlying physics, it concisely presents the central concepts of well cementing. The authors discuss the displacement of different fluids in the annulus, the mechanical stability of cement subject to varying downhole temperature, pressure  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Lavrov, Alexandre.
Physics and mechanics of primary well cementing.
(OCoLC)952981223
Print version:
Lavrov, Alexandre.
Physics and mechanics of primary well cementing.
Switzerland : Springer, [2016]
(DLC) 2016946005
(OCoLC)952981223
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Alexandre Lavrov; Malin Torsæter
ISBN: 9783319431659 331943165X
OCLC Number: 957490898
Description: 1 online resource (viii, 108 pages) : illustrations (some color).
Contents: 1. Introduction. 1.1. Why Drill Wells?. 1.2. The Basics of Well Drilling and Cementing. 1.3. The Importance of Well Cement Integrity. 1.4. Cement Chemistry. 1.5. Summary and Discussion. 2. Properties of Well Cement. 2.1. Properties of the Cement Slurry. 2.2. From Slurry to Solid: Cement Hardening. 2.3. Properties of Hardened Cement. 2.4. Summary and Discussion. 3. Fluid Flow and Displacement in the Annulus. 3.1. Forces Acting on Mud During Mud Displacement. 3.2. Kinematic Model of Annular Cementing. 3.3. Effect of Eccentric Annulus. 3.4. Effect of Borehole Shape. 3.5. Lost Circulation. 3.6. Effect of Well Inclination. 3.7. Example Case History: Primary Cementing in a Horizontal Well. 3.8. Effect of Flow Regime. 3.9. Effect of Pipe Movement. 3.10. Models of Cement Flow in the Annulus. 3.11. Summary and Discussion. 4. Heterogeneities in Cement. 4.1. Large-Scale Channels/Pockets. 4.2. Enhanced Cement Porosity. 4.3. Cement Slurry Settling. 4.4. Interface Defects. 4.5. Measurements of Cement Bonding Quality. 4.6. Operation-Induced Damage. 4.7. Summary and Discussion. 5. Formation Stresses, Casing Pressure, and Annular Cement. 5.1. Initial Stresses in Annular Cement. 5.2. Effect of Casing Pressure Increase on Annular Cement. 5.3. Effect of Casing Pressure Decrease on Annular Cement. 5.4. Effect of an Uncemented Channel on Stresses in Annular Cement Caused by Casing Pressure Changes. 5.5. Effect of Formation Stress Changes on Annular Cement. 5.6. From Stresses to Well Integrity: Microannulus, Cracks, and Permeability Hysteresis. 5.7. Summary and Discussion. 6. Thermal Stresses in Annular Cement. 6.1. Effect of Casing Temperature Increase on Well Cement. 6.2. Effect of Casing Temperature Decrease on Well Cement. 6.3. Effect of Eccentric Casing Positioning. 6.4. Summary and Discussion. 7. Knowledge Gaps and Outstanding Issues.
Series Title: SpringerBriefs in petroleum geoscience & engineering.
Responsibility: Alexandre Lavrov, Malin Torsæter.

Abstract:

This book covers the major physical and mechanical processes that unfold during cementing and subsequent well service, and which can affect the well integrity.  Read more...

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