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06248nam a2200841 4500 |
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ocn855858319 |
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20170124072536.9 |
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130813s2013 enk ob 001 0 eng |
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|a 2013033012
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|a DLC
|b eng
|e rda
|c DLC
|d YDX
|d N$T
|d IDEBK
|d DG1
|d YDXCP
|d CUI
|d COO
|d B24X7
|d OTZ
|d EBLCP
|d CDX
|d RECBK
|d OCLCF
|d DEBSZ
|d OCLCQ
|d DEBBG
|d GrThAP
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|a 865333953
|a 876848344
|a 900607450
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|a 9781118536261 (ePub)
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|a 1118536266 (ePub)
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|a 9781118536278 (Adobe PDF)
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|a 1118536274 (Adobe PDF)
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|z 9781119975854 (hardback)
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|a 9781118536254
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|a 1118536258
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|a 1119975859
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|a 9781119975854
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|a 9781306208093
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|a 1306208092
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|a EB00174714
|b Recorded Books
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|a NZ1
|b 15495679
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|a CHVBK
|b 334092280
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|a CHBIS
|b 010441756
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|a DEBSZ
|b 431580421
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|a GBVCP
|b 790210819
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|a DEBBG
|b BV043396159
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|a (OCoLC)855858319
|z (OCoLC)865333953
|z (OCoLC)876848344
|z (OCoLC)900607450
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|a pcc
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|a a------
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|a TK9152.163
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|a TEC
|x 009070
|2 bisacsh
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|a 621.48
|2 23
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|a TEC009020
|2 bisacsh
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|a MAIN
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|a Infrastructure systems for nuclear energy /
|c editors, Thomas T. Hsu, Jui-Liang Lin, Chiun-lin Wu.
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|a Chichester, West Sussex, UK :
|b John Wiley & Sons Inc.,
|c 2013.
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|a 1 online resource.
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|a text
|2 rdacontent
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|a computer
|2 rdamedia
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|a online resource
|2 rdacarrier
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|a "Infrastructure Systems for Nuclear Energy summarizes this progress with an up-to-date reference to guide the future research and design of infrastructure systems for nuclear energy"--
|c Provided by publisher.
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|a Includes bibliographical references and index.
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|a Description based on print version record and CIP data provided by publisher.
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|a Cover; Title Page; Copyright; Contents; List of Contributors; Preface; Acronyms; Chapter 1 Introduction; 1.1 International Workshop on Infrastructure Systems for Nuclear Energy; 1.2 Overview of Nuclear Power Plants; 1.3 Infrastructure for Nuclear Power Industry; 1.3.1 Technological Infrastructure; 1.3.2 Regulatory Infrastructure; 1.3.3 Computer Technology Infrastructure; 1.3.4 Human Infrastructure; 1.4 Containment Structures; 1.4.1 The Pressurized Water Reactors; 1.4.2 The Boiling Water Reactors; 1.4.3 Design and Testing Requirements; 1.5 Nuclear Waste Storage Facilities.
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|a 1.5.1 Spent Fuel Pools1.5.2 Operation; 1.5.3 Dry Cask Storage; Part One Infrastructure for Nuclear Power Industry; Chapter 2 Current Status and Future Role of Nuclear Power; 2.1 Introduction; 2.1.1 World Population Aspects; 2.1.2 World Climate Aspects; 2.1.3 Contribution of Nuclear Power to the World's Energy Mix and Energy Security; 2.2 Installed Nuclear Power Capacity in 2011; 2.2.1 Power Up-rates of NPPs; 2.2.2 Operational Issues Caused by Power Up-rates; 2.2.3 Licensing Aspects for Continued Operation of Current Generation NPPs; 2.2.4 Nuclear Fuel Supply; 2.2.5 Radioactive Waste Aspects.
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|a 2.2.6 Operational and Economic Features of NPPs2.2.7 Knowledge Management, Training, and Personnel Requirements; 2.2.8 Currently Operating Nuclear Power Plant Designs and Status; 2.2.8.1 Generation I NPPs; 2.2.8.2 Generation II NPPs; 2.2.8.3 Generation III and III+ NPPs; 2.2.8.4 Generation IV; 2.2.9 Nuclear Fuel Core Damage Frequency (CDF); 2.3 Discussion; 2.4 Conclusions; 2.5 Further Reading; References; Chapter 3 Seismic Probabilistic Risk Assessment for Nuclear Power Plants; 3.1 Introduction; 3.2 Conventional SPRA Methodologies; 3.2.1 Seismic Hazard Analysis.
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|a 3.2.2 Component Fragility Evaluation3.2.3 Plant-System and Accident-Sequence Analysis; 3.2.3.1 Event Trees; 3.2.3.2 Fault Trees; 3.2.4 Consequence Analysis; 3.3 The Methodology of Huang et al.; 3.3.1 Step 1: Analysis of Plant Systems and Accident Sequences; 3.3.2 Step 2: Characterization of Seismic Hazard; 3.3.3 Step 3: Simulation of Structural Responses; 3.3.4 Step 4: Damage Assessment of NPP Components; 3.3.5 Step 5: Risk Computation; 3.4 Summary and Conclusions; References; Chapter 4 Seismic Abatement Method for Nuclear Power Plants and Seismic-Isolation Systems for Structural Elements.
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|a 4.1 Main Principles of the Method4.2 Theorem and Proof; 4.3 Finite Element Construction; 4.4 Pros and Cons of the Method; 4.4.1 Advantages of the Method; 4.4.2 Disadvantages of the Method; 4.5 Application of the Method to Seismic Isolation Design of Whole Building; 4.6 Seismic Isolation Devices to Protect Various Elements and Units; 4.7 Applications; 4.8 Conclusions; References; Chapter 5 Framework for Design of Next-Generation Base-Isolated Nuclear Structures; 5.1 Introduction; 5.2 Development of Seismic Isolation Systems; 5.2.1 Applications of Seismic Isolation; 5.2.2 Seismic Isolator Units.
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|a Nuclear power plants
|x Earthquake effects.
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|a Reinforced concrete construction
|x Design and construction.
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|a Nuclear power plants
|x Design and construction.
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|a Nuclear power plants
|z Asia
|v Case studies.
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|a Nuclear facilities
|x Earthquake effects.
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|a Nuclear facilities
|x Design and construction.
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|a Earthquake resistant design.
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|a TECHNOLOGY & ENGINEERING / Civil / General.
|2 bisacsh
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650 |
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|a Nuclear power plants
|z Asia
|v Case studies.
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650 |
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4 |
|a Nuclear power plants
|x Design and construction.
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4 |
|a Nuclear power plants
|x Earthquake effects.
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|a Reinforced concrete construction
|x Design and construction.
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|a Technology.
|2 fast
|0 (OCoLC)fst01145078
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|a Electronic books.
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|a Electronic books.
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700 |
1 |
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|a Hsu, Thomas T. C.
|q (Thomas Tseng Chuang),
|d 1933-
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776 |
0 |
8 |
|i Print version:
|t Infrastructure systems for nuclear energy
|d Chichester, West Sussex : John Wiley & Sons Inc., 2013
|z 9781119975854
|w (DLC) 2013031573
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856 |
4 |
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|u https://doi.org/10.1002/9781118536254
|z Full Text via HEAL-Link
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|a 92
|b DG1
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