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Seismic Design of Industrial Facilities

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Cover of 'Seismic Design of Industrial Facilities'

Table of Contents

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    Book Overview
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    Chapter 1 Earthquake Damage and Fragilities of Industrial Facilities
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    Chapter 2 Seismic Risk Analysis of an Oil-Gas Storage Plant
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    Chapter 3 Site-Specific Seismic Hazard Assessment
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    Chapter 4 Critical Industrial Facilities: Simply Applying Current Importance Factors γI is not Enough!
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    Chapter 5 Overview of Seismic Regulations for French Industrial Facilities
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    Chapter 6 Seismic Design of Industrial Facilities in Germany
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    Chapter 7 Precast Industrial Buildings in Italy - Current Building Code and New Provisions Since the 2012 Earthquake
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    Chapter 8 Earthquake Assessment of Existing Chemical Production Facilities
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    Chapter 9 Probabilistic Seismic Analysis of Existing Industrial Facilities
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    Chapter 10 Uncertainty Propagation in Engineering Systems: Probability Density Evolution Theory and Its Recent Developments
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    Chapter 11 Elliptical Response Envelopes for the Design of Reinforced Concrete Structures: New Developments and Application to Nuclear Power Plant Buildings
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    Chapter 12 Improvement of Seismic Response of an Industrial Structure
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    Chapter 13 International Fusion Reactor - Tokamak Complex Seismic Isolation
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    Chapter 14 Strategies for the Seismic Protection of Power Plant Equipment
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    Chapter 15 MARMOT - A Certified Seismic Monitoring System for Vulnerable Industrial Facilities
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    Chapter 16 Automatic or Manual Safe Shutdown of Industrial Facilities on Earthquake Signal, Guidelines to Meet the New French Regulation: Seismological and Instrumental Aspects
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    Chapter 17 Experimental Study on Seismic Behaviour and Vibration Control of Wind Turbine and Electrical Transmision Tower
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    Chapter 18 Systemic Seismic Vulnerability and Risk Analysis of Urban Systems, Lifelines and Infrastructures
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    Chapter 19 Floor Response Spectra Considering Influence of Higher Modes and Dissipative Behaviour
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    Chapter 20 Application and Distinction of Current Approaches for the Evaluation of Earthquake-Response of Secondary Systems
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    Chapter 21 Seismic Design of Mechanical and Electrical Components According to Safety Standard KTA 2201 of the German Nuclear Safety Standards Commission
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    Chapter 22 Seismic Qualification of Equipment in Industrial Facilties
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    Chapter 23 Shake Table Test on the 1:30 Model Structure of a Large Cooling Tower for Fire Power Plant
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    Chapter 24 Seismic Qualification of Electrical Cabinets
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    Chapter 25 Seismic Design of Fastenings with Anchors in Nuclear Power Plants
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    Chapter 26 New European Seismic Regulations Provide Guidance for the Qualification and Design of Post-installed Anchoring
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    Chapter 27 Fastenings for Use in Concrete – Seismic Actions
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    Chapter 28 Reliability Analysis on Capacity Design Rules for Steel Frames
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    Chapter 29 Dissipative Devices for Vulnerability Reduction of Precast Buildings
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    Chapter 30 Seismic Performance of Concrete-Filled Steel Tubular (CFST) Structures
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    Chapter 31 System Identification of Industrial Steel Building Based on Ambient Vibration Measurements and Short Time Monitoring
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    Chapter 32 Collapse Simulation of Building Structures Induced by Extreme Earthquakes
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    Chapter 33 The Eurocode Approach to Seismic Design of Liquid-Filled Steel Storage Tanks
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    Chapter 34 Lateral Free Vibration of Liquid-Storage Tanks
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    Chapter 35 Seismic Design of Spherical Pressure Vessels
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    Chapter 36 Seismic Isolation of Cylindrical Liquid Storage Tanks
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    Chapter 37 A Comparison of Piping Stress Calculation Methods Applied to Process Piping System for Seismic Design
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    Chapter 38 Seismic Analysis of Pressure Vessels in Correspondence to the VCI-Guideline
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    Chapter 39 Seismic Assessment of Horizontal Cylindrical Reservoirs
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    Chapter 40 The Significance of Site Effect Studies for Seismic Design and Assessment of Industrial Facilities
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    Chapter 41 Soil Liquefaction: Mechanism and Assessment of Liquefaction Susceptibility
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    Chapter 42 Seismic Design and Verification of a Nuclear Power Plant Structure for the Storage of Radioactive Waste Components
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    Chapter 43 Seismic Analysis of Onshore Wind Turbine Including Soil-Structure Interaction Effects
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    Chapter 44 Dynamic Impedance of Foundation on Multi-Layered half-Space
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    Chapter 45 The Scaled Boundary Finite Element Method for Transient Wave Propagation Problems
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    Chapter 46 Attenuation of Ground-borne Vibrations Induced by Underground Dynamic Excitation
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    Chapter 47 Boundary Effects on Seismic Analysis of Multi-Storey Frames Considering Soil Structure Interaction Phenomenon
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    Chapter 48 Response Analysis of a Long-span Arch Bridge under the Seismic Travelling Wave Excitation
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    Chapter 49 A 3D Dynamic Impedance of Arbitrary-Shaped Foundation on Anisotropic Multi-Layered Half-space
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    Chapter 50 Two Parameters to Improve the Accuracy of the Green’s Functions Obtained via the Thin Layer Method
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    Chapter 51 Time Domain Analysis of Dynamic Response for 3D Rigid Foundation on Multi-layered Soil
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    Chapter 52 Eta-based Conditional Mean Spectrum, a New Design Spectrum for Industrial Facilities
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Title
Seismic Design of Industrial Facilities
Published by
Springer Vieweg, Wiesbaden, January 2014
DOI 10.1007/978-3-658-02810-7
ISBNs
978-3-65-802809-1, 978-3-65-802810-7
Editors

Sven Klinkel, Christoph Butenweg, Gao Lin, Britta Holtschoppen

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 51 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Greece 1 2%
Unknown 50 98%

Demographic breakdown

Readers by professional status Count As %
Student > Bachelor 9 18%
Student > Master 8 16%
Student > Ph. D. Student 7 14%
Professor > Associate Professor 4 8%
Student > Doctoral Student 4 8%
Other 7 14%
Unknown 12 24%
Readers by discipline Count As %
Engineering 35 69%
Earth and Planetary Sciences 2 4%
Business, Management and Accounting 1 2%
Unknown 13 25%