Jet Fire Due to Gas Leakage
Dynamical Theory and Risk Assessment
Series: Springer Series in Reliability Engineering;
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Product details:
- Edition number 2024
- Publisher Springer Nature Singapore
- Date of Publication 23 August 2024
- Number of Volumes 1 pieces, Book
- ISBN 9789819753284
- Binding Hardback
- No. of pages129 pages
- Size 235x155 mm
- Language English
- Illustrations IX, 129 p. 87 illus., 78 illus. in color. Illustrations, black & white 589
Categories
Long description:
This book presents a theoretical framework for the quantitative calculation of casualties and damage from jet fires caused by high-pressure gas leaks in pressure vessels or pipelines. The framework incorporates gas leakage models, combustion dynamics models, thermal radiation models, and thermal damage criteria. It conducts sensitivity and uncertainty analyses for the input parameters of the theoretical framework. The robustness of the theoretical framework is verified through field tests. Ultimately, the theoretical framework is used to quantitatively analyze the accidents involving jet fires due to the rupture of natural gas transmission pipelines.
The sub-models within the theoretical framework are developed using the fundamental principles of thermodynamics, combustion, fluid dynamics, and heat transfer, and have been validated by small-scale laboratory tests. However, the theoretical framework receives the validation of field tests and real-world case studies. The theoretical deductions in this book offer significant guidance for scaling up from the laboratory experiments to field applications. The book is intended for anyone interested in understanding the risks associated with gas leaks and jet fires. The methodology enables the calculation of hazards for specific processes in isolation or their integration to assess overall consequences.
MoreTable of Contents:
Importance and Characteristics of Gas Leakage and Jet fire.- Dynamical Process of Gas Leakage.- Combustion Dynamics of Jet Fire.- Theoretical framework for calculating jet fires induced by high-pressure transient leakage.- Application of theoretical framework into the risk assessment of jet fire.
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