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Recent Advances in Lifeline Earthquake Engineering.

Author: T Ariman; M Hamada; A C Singhal; M A Haroun; A S Cakmak
Publisher: Burlington : Elsevier Science, 1987.
Series: Developments in geotechnical engineering.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
Lifeline earthquake engineering is the application of all relevant knowledge and skill to provide economically feasible engineering safeguards for critical systems such as energy, transportation, water, power, communications, etc. Natural gas and oil pipelines, water and sewage lines, oil and gas storage facilities, tunnels, power, voice and data communication lines and equipment are some of the recognized examples  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Ariman, T.
Recent Advances in Lifeline Earthquake Engineering.
Burlington : Elsevier Science, ©1987
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: T Ariman; M Hamada; A C Singhal; M A Haroun; A S Cakmak
ISBN: 9780444596970 0444596976
OCLC Number: 862048711
Notes: Introduction.
Description: 1 online resource (244 pages).
Contents: Front Cover; Recent Advances in Lifeline Earthquake Engineering; Copyright Page; PREFACE; Dedication; Table of Contents; SECTION 1: PIPELINE RESPONSE TO LARGE GROUND DEFORMATIONS; Chapter 1. Earthquake Damage Caused by Liquefaction Induced Permanent Ground Displacement; ABSTRACT; INTRODUCTION; DAMAGE TO A STEEL GAS PIPE AND NUMERICAL ANALYSIS; DAMAGE TO FOUNDATION PILES AND NUMERICAL ANALYSIS; STUDY ON COLLAPSE OF THE SHOWA BRIDGE; REFERENCES; Chapter 2. Upgrading Seismic Reliability of Large Scale Lifeline Networks; ABSTRACT; INTRODUCTION; SEISMIC DURABILITY OF PIPE ELEMENTS. SEISMIC ENVIRONMENTNETWORK RELIABILITY COMPUTATION; MEASURE OF COMPONENT IMPORTANCE; EXAMPLES; CONCLUSIONS; ACKNOWLEDGMENTS; REFERENCES; Chapter 3. Seismic Response Analyses of Buried Pipelines with Many Branch Pipes; INTRODUCTION; BASIC EQUATIONS; COMPUTATIONAL MODEL; COMPUTATIONAL RESULTS; CONCLUSIONS; REFERENCES; Chapter 4. Dynamic Relative Displacement Between Liquefied Area and Non-Liquefied Area; INTRODUCTION; DYNAMIC RELATIVE DISPLACEMENT OF THE GROUND DURING THE EARTHQUAKE; ON-LINE GROUND RESPONSE ANALYTICAL METHOD; ANALYTICAL RESULTS AND OBSERVATION; CONCLUSIONS; AKNOWLEDGEMENT. REFERENCEChapter 5. Failure of Buried Pipelines Under Large Ground Deformations; ABSTRACT; 1. INTRODUCTION; 2. DAMAGES TO PIPELINES IN LARGE GROUND DEFORMATIONS; 3. BUCKLING OF BURIED PIPELINES; 4. TENSION FAILURE OF BURIED PIPELINES; 5. DESIGN CONSIDERATIONS; 6. CONCLUDING REMARKS; ACKNOWLEDGEMENT; REFERENCES; Chapter 6. Infrastructure Management for Pipelines; INTRODUCTION; OVERVIEW OF SYSTEMS ANALYSIS; PAVEMENT MANAGEMENT SYSTEMS; APPLICATION OF MANAGEMENT SYSTEMS TO LIFELINES; CONCLUSIONS; REFERENCES. SECTION 2: EXPERIMENTS, FIELD OBSERVATIONS AND ANALYSIS IN EARTHQUAKE BEHAVIOUR OF BURIED PIPELINESChapter 7. Kumagai Gumi Array System for Strong Earthquake Motion in Tohoku Area (Northeastern Part of Japan), and the Characteristics of the Analyzed Seismic Wave; SUMMARY; INTRODUCTION; OUTLINE OF THE OBSERVATION ARRAY; RECORDED EARTHQUAKE; CONCLUSIONS; ACKNOWLEDGMENT; REFERENCES; Chapter 8. Analysis of Buried, Jointed Pipelines; ABSTRACT; NOMENCLATURE; INTRODUCTION; STIFFNESS MATRIX AND FIXED-END-FORCE VECTOR; STIFFNESS AND FIXED-END-FORCE FUNCTIONS; EXAMPLE; CONCLUSIONS; REFERENCES. Chapter 9. Stochastic Analysis of Spatial Variability of Seismic Ground DeformationABSTRACT; INTRODUCTION; HOMOGENEOUS STOCHASTIC HORIZONTAL GROUND; EQUATIONS OF MOTION FOR HOMOGENEOUS STOCHASTIC HORIZONTAL GROUND; SPATIAL VARIABILITY OF GROUND DEFORMATION; NUMERICAL EXAMPLE; CONCLUSIONS; ACKNOWLEDGEMENT; REFERENCES; Chapter 10. Seismic Response of Buried Pipes in Back-Filled Trench; INTRODUCTION; GOVERNINGEQUATIONS and SOLUTION; NUMERICAL RESULTS AND DISCUSSION; ACKNOWLEDGMENTS; REFERENCES; Chapter 11. Model Experiment on the Strain in Buried Pipeline Associated with Soil Liquefaction.
Series Title: Developments in geotechnical engineering.

Abstract:

Lifeline earthquake engineering is the application of all relevant knowledge and skill to provide economically feasible engineering safeguards for critical systems such as energy, transportation, water, power, communications, etc. Natural gas and oil pipelines, water and sewage lines, oil and gas storage facilities, tunnels, power, voice and data communication lines and equipment are some of the recognized examples in this relatively new area of interest which has attracted an ever-increasing number of researchers in the past few years. This volume contains most of the papers on lifeli.

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