Development of Combined Optical System for Thermal Analysis of Impinging Flames
Ko, H.; Ahn, S.; Baek, S.; Kim, T.
Experimental Mechanics in Nano and Biotechnology: 71-74
2006
ISSN/ISBN: 1013-9826 Accession: 083040679
Full-Text Article emailed within 1 workday
Payments are secure & encrypted

References
Han Seo Ko; Seong Soo Ahn; Hyun Jung Kim 2011: Measurement of impinging butane flame using combined optical system with digital speckle tomography Optics and Lasers in Engineering 49(11): 1320-1329Zhang, T; Yu, G; Guo, Q; Wang, F 2013: Experimental Study on the Characteristics of Impinging Reaction Region with OH* Chemiluminescence in Opposed Impinging Diffusion Flames Energy and Fuels 27(11): 7023-7030
Kobus, C.J.; Oshio, T. 2005: Development of a theoretical model for predicting the thermal performance characteristics of a vertical pin-fin array heat sink under combined forced and natural convection with impinging flow International Journal of Heat and Mass Transfer 48(6): 1053-1063
Hu, J.; Kang, Y.; Lu, Y.; Yu, J.; Li, H.; Zhong, K. 2022: Numerical investigation of the thermal and ventilation performance of a combined impinging jet ventilation and passive chilled beam system Building and Environment 226: 109726
Canepa, F.; Guibert, A.; Xhelaj, A.; uul J.; Romanic, D.; Ricci, A.; Hangan, H.; Bouchet, J.-P.; Delpech, P.; Flamand, O.; Burlando, M. 2025: CLIMATHUNDERR: A Combined Impinging Jet and Gravity Current Technique to Investigate Thermal Effects on Downburst Winds Lecture Notes in Civil Engineering 718 LNCE: 1-13
Zhang, Y.; Bray, K.N.C. 1998: Characterization of impinging jet flames Combustion and Flame 116(4): 671-674
Ishino, Y.; Horimoto, K.; Kato, T.; Ishiguro, S.; Saiki, Y. 2013: 3D-CT Measurement of Premixed Flames Using a Multi-directional Quantitative Schlieren Optical System (Solo-measurement of Density and Combined-measurement of Density and Light-emission Distributions) Procedia Engineering 67: 303-316
Kilham, J. K.; Purvis, M. R. I. 1978: Heat Transfer from Normally Impinging Flames Combustion Science and Technology 18(3-4): 81-90
Hsieh, W.; Hou, S.; Lin, T. 2005: Methane flames in a jet impinging onto a wall Proceedings of the Combustion Institute 30(1): 267-275
Bahaidarah, H.; Tanweer, B.; Gandhidasan, P.; Rehman, S. 2015: A Combined Optical, Thermal and Electrical Performance Study of a V-Trough PV System- Experimental and Analytical Investigations Energies 8(4): 2803-2827
Libby, P. A. 1998: Premixed Laminar Flames in Impinging Flows Combustion Science and Technology 131(1-6): 345-379
Su, A.; Wen, M.H.; Lai, C.T. 2004: A study on impinging flames with pulsation enhancement Experimental Heat Transfer 17(4): 281-297
D.P Mishra 2004: Emission studies of impinging premixed flames Fuel 83(13): 1743-1748
Ay, S.U.; Liu, Y.C. 2002: Investigation of impinging diffusion flames with inert gas International Journal of Heat and Mass Transfer 45(15): 3251-3257
Kobus, C.J.; Oshio, T. 2005: Predicting the thermal performance characteristics of staggered vertical pin fin array heat sinks under combined mode radiation and mixed convection with impinging flow International Journal of Heat and Mass Transfer 48(13): 2684-2696
Singh, P.; Velamati, R.K.; Chander, S. 2019: Experimental and computational analysis of a row of three co-swirling impinging flames Heat and Mass Transfer 56(2): 365-384
Fernandes, E.C.; Leandro, R.E. 2006: Modeling and experimental validation of unsteady impinging flames Combustion and Flame 146(4): 674-686
Foat, T.; Yap, K.P.; Zhang, Y. 2001: The visualization and mapping of turbulent premixed impinging flames Combustion and Flame 125(1-2): 839-851
Brideau, S.A.; Collins, M.R. 2014: Development and validation of a hybrid PV/Thermal air based collector model with impinging jets Solar Energy 102: 234-246
Anderson, J.E.; Stresino, E.F. 1963: Heat Transfer from Flames Impinging on Flat and Cylindrical Surfaces Journal of Heat Transfer 85(1): 49-54