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Transportation for the Nuclear Industry

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Cover of 'Transportation for the Nuclear Industry'

Table of Contents

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    Book Overview
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    Chapter 1 Road Cask for the Transportation of CANDU Irradiated Fuel
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    Chapter 2 The Design of Transport Containers for Radioactive Waste Materials
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    Chapter 3 Flasks for Transporting Irradiated Nuclear Fuel
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    Chapter 4 Further Developments in High-Level Waste Transport Technology
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    Chapter 5 Discussion Following Session 1: Papers 1 – 4
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    Chapter 6 Experiments Conducted in Support of Transport Flask Heat Transfer Assessments
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    Chapter 7 The Development Status of Castor Ductile Cast Iron Transport Storage and Final Disposal Casks in the F.R.G.
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    Chapter 8 The Impact of Waste Gas Generation on the Design of a Sealed Packaging for Transuranic Waste Transport
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    Chapter 9 The Development and Testing of a Container for the Transport of Decommissioning Wastes
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    Chapter 10 Discussion Following Session 1: Papers 5 – 8
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    Chapter 11 Design of Ships for the Transport of Spent Nuclear Fuels
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    Chapter 12 Cement Solidification Using Large Containers: The Prediction of Product Quality
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    Chapter 13 20 Foot Container System for Shipment of Spent MTR-Fuel Assemblies
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    Chapter 14 Packaging and Loading Strategies for the Transport of Drumable Low Level Wastes
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    Chapter 15 Discussion Following Session 2 Papers 1 to 4
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    Chapter 16 Large Transport and Disposal Packages for Nuclear Power Station Decommissioning Waste
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    Chapter 17 A Transport Packaging for the Carriage of Radioactive Ion-Exchange Resin
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    Chapter 18 Programme to Develop a Large Transport Container for Transportation of Large Pieces of Contaminated Equipment and of Medium Level Waste
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    Chapter 19 Discussion Following Session 2: Papers 5 – 7
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    Chapter 20 The Role of Winfrith in Radioactive Materials Transport Technology
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    Chapter 21 Satellite Tracking of Radioactive Shipments — High Technology Solution to Tough Institutional Problems
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    Chapter 22 Quality Assurance in Spent Fuel Transports
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    Chapter 23 Technique of Stowing Packages Containing Radioactive Materials During Maritime Transportation
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    Chapter 24 Discussion Following Session 3: Papers 1 – 4
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    Chapter 25 Database Recording of Reactor and Fuel Element Information for Packaging and Transport
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    Chapter 26 Radioactive Material Transportation Impediments
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    Chapter 27 Application of Risk Assessment Methods to the Transport by Rail of Radioactive Materials on the Sellafield Site
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    Chapter 28 Safe Transport of Radioactive Material — A Training Experience
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    Chapter 29 Discussion Following Session 3: Papers 5 – 8
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    Chapter 30 Transport Studies for Candidate Near-Surface Repostory Sites
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    Chapter 31 Experience in the Transport of Spent Nuclear Fuel
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    Chapter 32 Transport of Spent Fuel from Garigliano Power Station to an AFR Repository
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    Chapter 33 Transportation of Nuclear Materials in the Federal Republic of Germany
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    Chapter 34 Discussion Following Session 4: Papers 1 – 4
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    Chapter 35 Operating Experience in Nuclear Transport for the Front End of the Fuel Cycle
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    Chapter 36 Sea Transportation of Heavy Plant for the Power Generation Industry
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    Chapter 37 Rail Transport of Very Large Nuclear Components
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    Chapter 38 A Review of Rail Transport for the Nuclear Industry
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    Chapter 39 Discussion Following Session 4: Papers 5 – 8
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Mentioned by

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Citations

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2 Mendeley
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Title
Transportation for the Nuclear Industry
Published by
Springer US, December 2012
DOI 10.1007/978-1-4757-0046-6
ISBNs
978-1-4757-0048-0, 978-1-4757-0046-6
Editors

Walton, D. G., Blackburn, S. M.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 2 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Poland 1 50%
Unknown 1 50%

Demographic breakdown

Readers by professional status Count As %
Lecturer 1 50%
Unknown 1 50%
Readers by discipline Count As %
Computer Science 1 50%
Unknown 1 50%