Paul V. Ferkul

Publications

Li, Y., Liao, Y. T., Ferkul, P. T., Johnston, M. T., & Bunnell, C. T. (2021). Experimental study of concurrent-flow flame spread over thin solids in confined space in microgravity. Combustion and Flame, 227 , 39-51.
Carney, A., Li, Y., Liao, Y. T., Olson, S. T., & Ferkul, P. T. (2020). Concurrent-Flow Flame Spread Over Thin Discrete Fuels in Microgravity. Combustion and Flame, 226 , 211-221.
Vetturini, A., Cui, W., Liao, Y. T., Olson, S. T., & Ferkul, P. T. (2020). Flame Spread Over Ultra-thin Solids: Effect of Area Density and Concurrent-Opposed Spread Reversal Phenomenon. Fire Technology, 56 (1), 91-111.
Vetturini, A., Cui, W., Liao, Y. T., Olson, S. T., & Ferkul, P. T. (2019). Flame Spread Over Ultra-thin Solids: Effect of Area Density and Concurrent-Opposed Spread Reversal Phenomenon. Fire Technology, 56 (1), 91-111.
Urban, D., Ferkul, P., Olson, S., Ruff, G., Easton, J., T'ien, J., Liao, Y. T., Li, C. T., Fernandez-Pello, C. T., Torero, J. T., Legros, G. T., Eigenbrod, C. T., Smirnov, N. T., Fujita, O. T., Rouvreau, S. T., Toth, B. T., & Jomaas, G. T. (2018). Flame spread: Effects of microgravity and scale. Combustion and Flame, 199 , 168-182.
Urban, D., Ferkul, P., Olson, S., Ruff, G., Easton, J., T'ien, J., Liao, Y. T., Li, C. T., Fernandez-Pello, C. T., Torero, J. T., Legros, G. T., Eigenbrod, C. T., Smirnov, N. T., Fujita, O. T., Rouvreau, S. T., Toth, B. T., & Jomaas, G. T. (2018). Flame spread: effects of microgravity and scale. Combustion and Flame, 199 , 168-182.
Li, C., Liao, Y. T., T'ien, J. T., Urban, D. T., Ferkul, P. T., Olson, S. T., Ruff, G. T., & Easton, J. T. (2018). Transient flame growth and spread processes over a large solid fabric in concurrent low-speed flows in microgravity - model versus experiment. Proceedings of the Combustion Institute, 37 (3), 4163-4171.
Zhao, X., Liao, Y. T., Johnston, M. T., Tien, J. S., Ferkul, P. S., & Olson, S. S. (2016). Concurrent flame growth, spread, and quenching over composite fabric samples in low speed purely forced flow in microgravity. Proceedings of the Combustion Institute, 36 (2), 2971-2978.