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Math hydrogen catalytic recombiner: Engineering model for dynamic full-scale calculations

Avdeenkov, A. V., Sergeev, V. V., Stepanov, A. V., Malakhov, A. A., . Y. Koshmanov, D. ., Soloviev, S. L., & Bessarabov, D. G. (2018). Math hydrogen catalytic recombiner: Engineering model for dynamic full-scale calculations. International Journal of Hydrogen Energy, 43(52), 23523-23537+. https://doi.org/10.1016/j.ijhydene.2018.10.212 (Original work published)

EFFECT OF MESH RESOLUTION AND BUOYANCY-DRIVEN FLOWS ON THE k - epsilon TURBULENCE MODELS USING THE HYDRAGON CODE

Saeed, M. ., . Y. Yu, J. ., Zhong, X. P., Hou, B. X., Zhang, X. L., … Ghazanfar, M. A. (2017). EFFECT OF MESH RESOLUTION AND BUOYANCY-DRIVEN FLOWS ON THE k - epsilon TURBULENCE MODELS USING THE HYDRAGON CODE. 25th International Conference on Nuclear Engineering. Presented at the. Shanghai, PEOPLES R CHINA: Amer Soc Mechanical Engineers. Retrieved from https://www.webofscience.com/wos/woscc/full-record/WOS:000426020900008 (Original work published)

Dispersion and behavior of hydrogen for the safety design of hydrogen production plant attached with nuclear power plant

Wang, K. ., Zhang, X. J., Miao, Y. ., He, B. F., & Wang, C. . (2020). Dispersion and behavior of hydrogen for the safety design of hydrogen production plant attached with nuclear power plant. International Journal of Hydrogen Energy, 45(39), 20250-20255+. https://doi.org/10.1016/j.ijhydene.2020.04.064 (Original work published)

Development of a mitigation system against hydrogen-air deflagrations in nuclear power plants

Saitoh, H. ., Otsuka, T. ., Yoshikawa, N. ., Kanno, N. ., Takanashi, S. ., Oozawa, Y. ., … Tanaka, K. . (2019). Development of a mitigation system against hydrogen-air deflagrations in nuclear power plants. Journal of Loss Prevention in the Process Industries, 60, 9-16+. https://doi.org/10.1016/j.jlp.2019.03.011 (Original work published 2025)
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