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Study on peak overpressure and flame propagation speed of gas deflagration in the tube with obstacles

Study on peak overpressure and flame propagation speed of gas deflagration in the tube with obstacles
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摘要 The on-way peak overpressure and flame propagation speed of gas deflagration in the tube with obstacles are important data for process safety. Based on carbon monoxide deflagration experiments, the paper presents a multi-zone integration model for calculation of on-way peak overpressure, in which the tube with obstacles is considered as a series of venting explosion enclosures which link each others. The analysis of experimental data indicates that the on-way peak overpressure of gas deflagration can be correlated as an empirical formula with equivalence ratio of carbon monoxide oxidation, expansion ratio, flame path length, etc., and that the on-way peak overpressure exhibits a linear relationship with turbulence factor and flame propagation speed. An empirical formula of flame propagation speed is given. The on-way peak overpressure and flame propagation speed of gas deflagration in the tube with obstacles are important data for process safety. Based on carbon monoxide deflagration experiments, the paper presents a multi-zone integration model for calculation of on-way peak overpressure, in which the tube with obstacles is considered as a series of venting explosion enclosures which link each others. The analysis of experimental data indicates that the on-way peak overpressure of gas deflagration can be correlated as an empirical formula with equivalence ratio of carbon monoxide oxidation, expansion ratio, flame path length, etc., and that the on-way peak overpressure exhibits a linear relationship with turbulence factor and flame propagation speed. An empirical formula of flame propagation speed is given.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2010年第7期1847-1854,共8页 中国科学(技术科学英文版)
基金 supported by the National Natural Science Foundation of China (Grant No. 50976122) the National Hi-Tech Research and Development Program of China ("863" Program) (Grant No. 2006AA05Z253) the Knowledge Innovation Program of the Chinese Academy of Sciences(GrantNo. KGCX2-YW-321)
关键词 PEAK OVERPRESSURE FLAME propagation speed OBSTACLE multi-zone integration model peak overpressure flame propagation speed obstacle multi-zone integration model
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参考文献12

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二级参考文献3

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