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Safety of Thermal Water Reactors

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Cover of 'Safety of Thermal Water Reactors'

Table of Contents

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    Book Overview
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    Chapter 1 Introduction
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    Chapter 2 Abbreviations:
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    Chapter 3 Welcome Address
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    Chapter 4 The CEC Research Action Programme on the Development of Nuclear Fission Energy
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    Chapter 5 The CEC Indirect Action Research Programme, Safety of Thermal Water Reactors (1919–1983)
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    Chapter 6 Important thermohydraulic aspects during refilling and reflooding of an uncovered LWR core
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    Chapter 7 Studies on the Effects of Blockage Upon LWR Emergency Core Cooling Systems
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    Chapter 8 Droplet Dynamics and Heat Transfer in Dispersed Two Phase Flow
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    Chapter 9 An Experimental Investigation of the Effect of Clad Ballooning on the Effectiveness of PWR Emergency Core Cooling
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    Chapter 10 Out of Pile Ballooning and Bursting Tests on Zircaloy Cladding Rods with Direct and Indirect Heating
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    Chapter 11 General discussion concerning on Sessions A1 and A2
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    Chapter 12 2D Effects in the Core During the Reflooding Phase of a Loca
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    Chapter 13 Fluid Dynamic Effects in the Fuelelement Top Nozzle Area During Refilling and Reflooding
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    Chapter 14 Study of Rewetting and Quench Phenomena by Single Pin Out-of- Pile Experiments, with Special Emphasis on the Effect of Pin Composition
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    Chapter 15 Heat Transfer to a Dispersed Two-Phase Flow and Detailed Quench Front Velocity Research
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    Chapter 16 Rewetting Propagation Over Zircaloy Under Bottom Flooding Conditions
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    Chapter 17 The Role of Experiments in the Development and Qualification of Thermalhydraulic Codes, as Experienced in the Development of the Cathare Code
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    Chapter 18 Large-Scale Field Trials on Dense Vapour Dispersion
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    Chapter 19 Aspects of the Dispersion of Denser-Than-Air Vapours Relevant to Gas Cloud-Explosions
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    Chapter 20 Verification of Heavy Gas Models on the Basis of Large Scale Experiments
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    Chapter 21 Computer Processing of Visual Records from the Thorney Island Large Scale Gas Trials
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    Chapter 22 Transition from Slow Deflagration to Detonation
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    Chapter 23 On the Propagation of the Pressure Pulse Due to an Unconfined Gas Cloud Explosion. A Theoretical Analysis
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    Chapter 24 Gas Cloud Explosions and their Effect on Nuclear Power Plant Basic Development of Explosion Codes
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    Chapter 25 Validation of Blast Simulation Codes and Experimental Investigation of Flame Propagation in the Presence of Obstacles
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    Chapter 26 Characterization of the Pressure Field Induced by the Explosions in Air of a Hydrocarbon-Air Mixture, with Slow Deflagration or Fast Deflagration
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    Chapter 27 Experimental Investigation of the Acceleration of Deflagration in Wake Flow
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    Chapter 28 Calculation of Overpressures on the Buildings of Power Plant Due to the Passage of a Shock Wave Caused by an Accidental Explosion
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    Chapter 29 Blast Wave Propagation and the Influence of Obstacles
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    Chapter 30 Calculation of the Wall Pressure Field Generated on a Group of Bluidings by an External Explosion
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    Chapter 31 Recent Results of Experimental Studies on the Transition of a Deflagration into a Detonation and Some Aspects for the Transposition of these Results to Confined Explosions
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    Chapter 32 Review of Specific Effects in Atmospheric Dispersion Calculations
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    Chapter 33 The Effects of Buildings on Low-Level Atmospheric Discharges
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    Chapter 34 Predicting Lift-Off of Major Self-Heating Releases under the Influence of a Building
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    Chapter 35 Development of an Integral Model of a Radioactive Jet Released Accidentally from a Nuclear Reactor
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    Chapter 36 Development of a Protoype Mesoscale Computer Model Incorporating Treatment of Topography
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    Chapter 37 Finite Element Three-Dimensional Formulation of a Variational Procedure of Wind Field Adjustment Over a Domain of Complex Topography
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    Chapter 38 Description of a Recent Nordic Mesoscale Dispersion Experiment Over a Land-Water-Land Area (The Øresund Experiment)
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    Chapter 39 Wind Tunnel Modeling of Turbulent Diffusion of Pollutant Puffs
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    Chapter 40 Physical Model of the Dispersion of a Radioactive Contaminant in the Atmosphere above a Heat Island
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    Chapter 41 Wind Tunnel Simulation of Atmospheric Dispersion in Stable Conditions at a Real Site
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    Chapter 42 Assessment of the Dispersion of Fission Products in the Atmosphere following a Reactor Accident under Meteorological Conditions of Low Wind Speed
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    Chapter 43 Local Scale Atmospheric Diffusion at a Coastal Site in the Presence of Breeze Effect
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    Chapter 44 Sensitivity, Applicability and Validation of Bi-Gaussian Off- and On-Line Models for the Evaluation of the Consequences of Accidental Releases in Nuclear Facilities
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    Chapter 45 Interlaboratory Comparison of SF 6 Determination used within the Framework of Tracer Releases
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    Chapter 46 Estimates of Uncertainty in Dispersion Modelling
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    Chapter 47 Overview and Conclusions on the Results Obtained in Research Area A: The Loss-Of-Coolant Accident (LOCA) and the Functioning and Performance of the Emergency Core Cooling System (ECCS)
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    Chapter 48 Overview and Conclusions on the Results Obtained in Research Area B: The Protection of Nuclear Power Plants Against External Gas Cloud Explosions
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    Chapter 49 Overview and Conclusions on the Results Obtained in Research Area C: The Release and Distribution of Radioactive Fission Products in the Atmosphere following a Reactor Accident
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    Chapter 50 The CEC Research Action Programme on Reactor Safety (1984–1987)
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    Chapter 51 Developments in Reactor Safety Research
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    Chapter 52 Concluding Panel
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    Chapter 53 Closing Address
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Title
Safety of Thermal Water Reactors
Published by
Springer Netherlands, December 2012
DOI 10.1007/978-94-009-4972-0
ISBNs
978-9-40-108701-8, 978-9-40-094972-0
Editors

Skupinski, E., Tolley, B., Vilain, J.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 3 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Germany 1 33%
Unknown 2 67%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 2 67%
Researcher 1 33%
Readers by discipline Count As %
Energy 1 33%
Engineering 1 33%
Unknown 1 33%