<  Retour au portail Polytechnique Montréal

Documents dont l'auteur est "Vena, Patrizio"

Monter d'un niveau
Pour citer ou exporter [feed] Atom [feed] RSS 1.0 [feed] RSS 2.0
Nombre de documents: 14

Durocher, A., Fan, L., Füri, M., Sirois, J., May, D. A., Bourque, G., Bergthorson, J. M., Yun, S., & Vena, P. (2025). OH-PLIF measurements for micromixed flames in a multi-injector burner at elevated pressures and temperatures. Journal of Engineering for Gas Turbines and Power, GTP-25-146 (15 pages). Lien externe

Fan, L., Durocher, A., Bergthorson, J. M., Fond, B., Savard, B., & Vena, P. (2025). Investigation on the structure of high Ka flames using simultaneous thermographic PIV and OH-PLIF. Combustion and Flame, 275, 114072 (16 pages). Lien externe

Maya Murcia, L. F., Fan, L., Durocher, A., Savard, B., & Vena, P. (2025). An evaluation of event-based cameras for particle image velocimetry. Experiments in Fluids, 66(11), 22 pages. Lien externe

Durocher, A., Fan, L., Füri, M., Bourque, G., Sirois, J., May, D. A., Bergthorson, J. M., Yun, S., & Vena, P. (2024). An investigation of a multi-injector, premix/micromix burner burning pure methane to pure hydrogen. Journal of Engineering for Gas Turbines and Power, 1-11. Lien externe

Durocher, A., Fan, L., Füri, M., Bourque, G., Sirois, J., May, D. A., Bergthorson, J. M., Yun, S., & Vena, P. (2024). Characterization of a 5-nozzle array using premix/micromix injection for hydrogen. Applications in Energy and Combustion Science, 18, 100260 (13 pages). Disponible

Francolini, B., Fan, L., Abbasi-Atibeh, E., Bourque, G., Vena, P., & Bergthorson, J. M. (2024). Investigation of differential diffusion in lean, premixed, hydrogen-enriched swirl flames. Applications in Energy and Combustion Science, 18, 100272 (16 pages). Disponible

Bae, J., Ardebili, Y. N., Vena, P., & Chaudhuri, S. (2024). Effect of swirler spin on flame shape and combustion dynamics. Proceedings of the Combustion Institute, 40(1-4), 105663 (7 pages). Lien externe

Durocher, A., Fan, L., Füri, M., Bourque, G., Bergthorson, J. M., Yun, S., & Vena, P. (2024). Phase-averaged, 3D OH-LIF reconstruction for multi-nozzle, micromixed hydrogen combustion. Proceedings of the Combustion Institute, 40(1-4), 105561 (7 pages). Lien externe

Fan, L., Savard, B., Fond, B., Durocher, A., Bergthorson, J., Carlyle, S., & Vena, P. (juin 2023). Mechanisms Leading to Stabilization and Incomplete Combustion in Lean CH4/H2 Swirling Wall-Impinging Flames [Communication écrite]. ASME Turbo Expo 2023: Turbomachinery Technical Conference and Exposition (GT 2023), Boston, MA, USA (12 pages). Lien externe

Fan, L., Savard, B., Fond, B., Durocher, A., Bergthorson, J., Carlyle, S., & Vena, P. (juin 2023). Mechanisms leading to stabilization and incomplete combustion in lean CH₄/H₂ swirling wall-impinging flames [Communication écrite]. ASME Turbomachinery Technical Conference and Exposition (Turbo Expo) on Collaborate, Innovate and Empower - Propulsion and Power for a Sustainable Future, Boston, MA (10 pages). Publié dans Journal of Engineering for Gas Turbines and Power. Lien externe

Fan, L., Savard, B., Carlyle, S., Nozari, M., Naaman, R., Fond, B., & Vena, P. (2023). Simultaneous stereo-PIV and OHCH2O PLIF measurements in turbulent ultra lean CH4/H2 swirling wall-impinging flames. Proceedings of the Combustion Institute, 39(2), 2179-2188. Lien externe

Fan, L., Vena, P., Savard, B., & Fond, B. (2022). Experimental and numerical investigation on the accuracy of phosphor particle streak velocimetry. Experiments in Fluids, 63, 20 pages. Lien externe

Fan, L., Vena, P., Savard, B., Xuan, G., & Fond, B. (2021). High-resolution velocimetry technique based on the decaying streaks of phosphor particles. Optics Letters, 46(3), 641-644. Lien externe

Fan, L., Vena, P., Savard, B., Xuan, G., & Fond, B. (août 2021). A novel streak velocimetry technique based on 2D fits of decaying phospor particle images [Communication écrite]. 14th International Symposium on Particle Image Velocimetry (ISPIV 2021) (2 pages). Lien externe

Liste produite: Fri Dec 5 03:30:29 2025 EST.