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Guidelines for Vapor Cloud Explosion, Pressure Vessel Burst, BLEVE, and Flash Fire Hazards


Guidelines for Vapor Cloud Explosion, Pressure Vessel Burst, BLEVE, and Flash Fire Hazards


2. Aufl.

von: CCPS (Center for Chemical Process Safety)

139,99 €

Verlag: Wiley
Format: PDF
Veröffentl.: 16.09.2010
ISBN/EAN: 9780470640432
Sprache: englisch
Anzahl Seiten: 456

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Beschreibungen

This guide provides an overview of methods for estimating the characteristics of vapor cloud explosions, flash fires, and boiling-liquid-expanding-vapor explosions (BLEVEs) for practicing engineers. It has been updated to include advanced modeling technology, especially with respect to vapor cloud modeling and the use of computational fluid dynamics. The text also reviews past experimental and theoretical research and methods to estimate consequences. Heavily illustrated with photos, charts, tables, and diagrams, this manual is an essential tool for safety, insurance, regulatory, and engineering students and professionals.
List of Tables. <p>List of Figures.</p> <p>Glossary.</p> <p>Acknowledgements.</p> <p><b>1. INTRODUCTION.</b></p> <p><b>2. MANAGEMENT OVERVIEW.</b></p> <p>2.1. Flash Fires.</p> <p>2.2. Vapor Cloud Explosions.</p> <p>2.3. Pressure Vessel Bursts.</p> <p>2.4. BLEVEs.</p> <p>2.5. Prediction methodologies.</p> <p><b>3. CASE HISTORIES.</b></p> <p>3.1. Historical experience.</p> <p>3.2. Flash fires.</p> <p>3.3. Vapor Cloud Explosions.</p> <p>3.4. Pressure Vessel Burst.</p> <p>3.5. BLEVE.</p> <p><b>4. BASIC CONCEPTS.</b></p> <p>4.1. Atmospheric Vapor Cloud Dispersion.</p> <p>4.2. Ignition.</p> <p>4.3. Thermal Radiation.</p> <p>4.4. Explosions — VCE.</p> <p>4.5. Blast Effects.</p> <p><b>5. FLASH FIRES.</b></p> <p>5.1. Overview of Experimental Research.</p> <p>5.2. Flash-Fire Radiation Models.</p> <p>5.3. Sample Calculations.</p> <p><b>6. VAPOR CLOUD EXPLOSIONS.</b></p> <p>6.1. Introduction.</p> <p>6.2. Vapor Cloud Deflagration Theory and Research.</p> <p>6.3. Vapor Cloud Detonation Theory and Research.</p> <p>6.4. VCE Prediction Methods.</p> <p>6.5. Sample problems.</p> <p><b>7. PRESSURE VESSEL BURSTS.</b></p> <p>7.1. Mechanism of a PVB.</p> <p>7.2. Scaling Laws Used in PVB Analyses.</p> <p>7.3. Blast Eeffects of Pressure-Vessel Bursts.</p> <p>7.4. Methods for Predicting Blast Effects from Vessel Bursts.</p> <p>7.5. Fragments from a PVB.</p> <p>7.6. Predicting Fragment Effects from Vessel Bursts.</p> <p><b>8. BASIC PRINCIPLES OF BLEVES.</b></p> <p>8.1. Introduction.</p> <p>8.2. Definition of a BLEVE.</p> <p>8.3. Theory.</p> <p>8.4. BLEVE Consequences.</p> <p>8.5. Analytical Models.</p> <p>8.6. Sample Problems.</p> <p><b>9. REFERENCES.</b></p> <p><b>APPENDIX A: VIEW FACTORS FOR SELECTED CONFIGURATIONS.</b></p> <p><b>APPENDIX B: TABULATION OF SOME GAS PROPERTIES IN METRIC UNITS.</b></p> <p><b>APPENDIX C: CONVERSION FACTORS TO SI FOR SELECTED QUANTITIES.</b></p>
"Heavily illustrated with photos, charts, tables, and diagrams, this manual is an essential tool for safety, insurance, regulatory, and engineering students and professionals." (Forbes.com, 27 October 2010)
Since 1985, the <b>Center for Chemical Process Safety (CCPS)</b> has been the world leader in developing and disseminating information on process safety management and technology. CCPS, an industry technology alliance of the American Institute of Chemical Engineers (AIChE), has published over 80 books in its process safety guidelines and process safety concepts series, and over 100 training modules through its <i>Safety in Chemical Engineering Education (SACHE)</i> series.

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