참고문헌
- Liu, S., Gao. X. and Zhang, S., "Self-adaptive Chaotic Local Search Particle Swarm Optimization for Propylene Explosion Region Parameter Identification", The 31th Chinese Control and Decision Conference(CCDC) IEEE, 1702-1707(2019).
- Crowl, D. A. and Louvar, J. F., "Chemical Process Safety: Fundamentals with Application", Pearson Education International, Boston, 225-260(2011).
- Korzynski, M. D. and Dinca, M., "Oxidative Dehydrogenation of Propane on the Realm of Metal-Organic Framework", ACS Central Science, 10-12(2017).
- Kim, W. K., Kim, H. H., Ryu, J. W. and Choi, J. W., "The Measurement of the Explosion Limit and the Minimum Oxygen Concentration of Gasoline According to Variation in Octane Number", Korean Chem. Eng. Res., 55(5), 618-622(2017). https://doi.org/10.9713/kcer.2017.55.5.618
- NFPA 68, "Guide for Venting Deflagrations", National Fire Protection(1998).
- NFPA 68, "Standard on Explosion Protection by Deflagrations Vending", Quincy, MA(2013).
- Lee, C. J. and Kim, L. H., "Characteristics of Dust Explosion in Dioctyl Terephthalic Acid Manufacturing Process", Korean Chem. Eng. Res., 57(6), 790-803(2019). https://doi.org/10.9713/kcer.2019.57.6.790
- Mathieu, D., "Power Low Expressions for Predicting Lower and Upper Flammability Limit Temperature", Industrial & Engineering Chemistry Research, 52(26), 9317-9322(2013). https://doi.org/10.1021/ie4002348
- Razus, D., Oancea, D. and Ionescu, N. I., "Burning Velocity Determination by Spherical Bomb Technique. Part II. Application to Gaseous Propylene-air Mixtures of Various Compositions, Pressure and Temperatures", Rev. Rou. Chim., 45, 319-330(2000).
- Yu, X., Yan, X., Ji, W., Luo, C., Yao, F. and Yu, J., "Effect of Superambient Conditions on the Upper Explosion Limit of Ethane/oxygen and Ethylene/oxygen Mixtures", J. Loss Prevention in the Process Industries, 59, 100-105(2019). https://doi.org/10.1016/j.jlp.2019.03.009
- Giurcan, V., Mitu, M., Razus, D. and Oancea, D., "Influence of Inert Additives on Smallscale Closed Vessel Explosions of Propaneair Mixture", Fire Safety J., 111, 102939(2020). https://doi.org/10.1016/j.firesaf.2019.102939
- Luo, Z., Liu, L., Cheng, F., Wang, T., Su, B., Zhang, J., Gao, S. and Wang, C., "Effects of a Carbon Monoxide-dominant Gas Mixture on the Explosion and Flame Propagation Behaviors of Methane in Air", J. Loss Prevention in the Process Industries, 58, 8-16(2019). https://doi.org/10.1016/j.jlp.2019.01.004
- Jo, Y. D., "Estimate Minimum Amount of Methane for Explosion in a Confined Space", J. Korean Institute of Gas, 21(4), 1-5(2017). https://doi.org/10.7842/kigas.2017.21.4.1
-
Choi, Y. J., Heo, J. M., Kim, J. H. and Choi, J. W., "A Study on the Measurement of Explosion Range by
$CO_2$ Addition for the Process Safety Operation of Propylene", J. Korea Academia Instial Cooperation Society, 20(7), 599-606(2019). - Beak, J. H., Lee, H. J. and Jang, C. B., "A Methodology for Determination of the Safety Distance in Chemical Plants using CFD Modeling", J. Korean Society of Safety, 31(3), 162-167(2016). https://doi.org/10.14346/JKOSOS.2016.31.3.162
- Zhang, B., Xiu, G. and Bai, C., "Explosion Characteristics of Argon/nitrogen Diluted Natural Gas-air Mixtures", Fuel, 124, 125-132(2014). https://doi.org/10.1016/j.fuel.2014.01.090
- Chen, S., Chen, H., Zhu, Q. and Liang, D., "Effect of Initial Temperature and Initial Pressure on vapor Explosion Characteristics of Nitro Thinner", J. Loss Prevention in the Process Industries, 61, 298-304(2019). https://doi.org/10.1016/j.jlp.2019.05.020
- Razus, D., Brinzea, V., Mitu, M. and Oancea, D., "Temperature and Pressure Influence on Explosion Pressures of Closed Vessel Propaneair Deflagrations", J. Hazardous Materials, 174, 548-555(2010). https://doi.org/10.1016/j.jhazmat.2009.09.086
- Ha, D. M., "Measurement and Prediction of Fire and Explosion Properties of n-Ethylanilne", Korean Chem. Eng. Res., 56(4), 474-478(2018). https://doi.org/10.9713/KCER.2018.56.4.474
- Leffler, W. L., Natural Gas Liquids: A Nontechnical Guide, PennWell Books, Tulsa, Oklahoma, USA, 112-115(2014).
- Cengel, Y. A. and Cimbala, J. M., Fluid Mechanics: Fundamentals and Applications 4 edition in SI units, Mc Graw-Hill, New York, 40-42(2019).
- Yan, X. T. and Xu, Y., Chemical Vapour Deposition: An Integrated Engineering Design for Advanced Materials, Springer, London, 29-30(2010).
- ASTM E918-83, Standard Practice for Determinimg Limits of Flammability of Chemicals at Elecated Temperature and Pressure, PA: ASTM International(2011).