301 - 325 of 1,090
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CreatorTitleDateDescription
301 Hedman, P. O.; Highsmith, J. R.; Soelberg, N. R.; Smoot, L. D.Detailed Local Measurements in the BYU Entrained Coal Gasifier1982
302 Verma, I.Detailed Soot Modeling in Turbulent Kerosene/air Diffusion Flame: Sensitivity Analysis of Models Using Moment of Methods2018-09-18Paper from the AFRC 2018 conference titled Detailed Soot Modeling in Turbulent Kerosene/air Diffusion Flame: Sensitivity Analysis of Models Using Moment of Methods
303 Stier, Randy S.Detecting Flame Instability and/or Loss of Flame in Fired Heaters Using Advanced Pressure Diagnostics2013-09-25Paper from the AFRC 2013 conference titled Detecting Flame Instability and/or Loss of Flame in Fired Heaters Using Advanced Pressure Diagnostics by Randy Stier
304 Kaufman, K. C.; Fiveland, W. A.; Fornaciari, Neal; Goix, Philippe; Walsh, Peter M.Developing a Benchmark for Natural Gas Combustion Models1996
305 Regan, John W.; von Hein, Robert J.; Peletz, Lawrence J. Jr.; Wesnor, James D.Developing ABBs LEBS Technologies1996
306 Suzukawa, Yutaka; Mori, Isao; Sugiyama, Syunichi; Hasegawa, ToshiakiDevelopment and Application of Direct Fired Regenerative Burner Heating System1998
307 Taylor, CurtisDevelopment and Commercialization of an Advanced, Low-Emissions, Multi-Fuel Oxygen Burner1994
308 Crimmins, J.; Khinkis, M.; Kunc, V.; Korenberg, Dr. J.; Reider, C.Development and Commercialization of an Efficient Cyclonic Incinerator for Wastes1987
309 Jamaluddin, J.Development and Demonstration of a Fuel-Flexible Burner for Fired Heaters2014-09-10Paper from the AFRC 2014 conference titled Development and Demonstration of a Fuel-Flexible Burner for Fired Heaters by J. Jamaluddin.
310 Sullivan, John D.; Smith, Scott H.; Webb, Andrew W.Development and Demonstration of Large Scale Industrial Low Emission Radiation Stabilized Burners1998
311 Benson, Charles; Thijssen, Johannes; Loftus, Peter; Moreland, Don; Moore, Ed; Irwin, Bruce; Gemmer, R. V.; Lingras, Anil; Swistock, HarryDevelopment and Demonstration of the Low NOx StAR Burner for High Temperature Industrial Furnaces1994
312 Sullivan, John D.; Webb, Andrew W.Development and Demonstration of the Radiation Stabilized Burner for Boilers and Process Heaters1996
313 Khinkis, M. J.; Kunc, V.; Romanovich, P.Development and Operation of an Efficient Cyclonic Incineration Demonstration System for Industrial Wastewater1987
314 Development and Performance Evaluation of the New Low NOx CGRI Burner for Use with High Air Preheat1997
315 Beer, J. M.; Barta, L. E.; Lewis, P. F.; Wood, V.; Akinyemi, O.; Haynes, J.; Jimenez, J.; Manurung, R.; Rodgers, L. W.Development and Testing of the MIT-RSFC Low-NOx Coal Combustor for the B &W LEBS Program1994
316 Jamaluddin, Jamal; Benson, Charles; Pellizzari, Roberto; Marty, Seth; Young, Thomas; Isaacs, Rex; Renk, JosephDevelopment of a Fuel-Flexible Burner for Process Plants2012-09-06
317 Bortz, Steven J.; Yang, Shyh-ChingDevelopment of a Generalized Burner Design Procedure1990
318 Lifshits, VladimirDevelopment of a High Performance Versatile Low NOx Burner1996
319 Matt WhelanDevelopment of a Low NOx Burner for Combined Cycle Gas Turbine/ Once-Through Steam Generator System2016-09-13Conference paper
320 Whelan, M.Development of a Low NOx Burner for Combined Cycle Gas Turbine/ Once-Through Steam Generator System2016-09-13Paper from the AFRC 2016 conference titled Development of a Low NOx Burner for Combined Cycle Gas Turbine/ Once-Through Steam Generator System
321 Krill, W. V.; Merrick, E. B.; Kesselring, J. P.; Friedman, M. A.Development of a Low NOx Burner for Gas Fired Firetube Boilers1981
322 Rahbar, ShahrzadDevelopment of a Low NOx Burner for Use with Preheated Combustion Air1994
323 Stretton, A. J.The Development of a Low NOx High Intensity Burner1994
324 Loftus, Peter; Benson, Charles; Wiener, William; Cole, Robert; Porter, James; Manthei, Dennis; Dolan, WilliamDevelopment of a Low-NOx Burner for Direct-Fired Absorption Chillers1994
325 Lewis, Elliot-Sullivan; Hack, Richard; McDonell, VincentDevelopment of a modular supplemental burner for optimization of distributed generation/combined heat and power system efficiency2011Increased interest in distributed power generation has lead to increased interest in combined heating cooling and power (CCHP). One significant issue in implementing a CCHP is that electrical loads and heating or cooling loads are rarely synchronized. Duct burners are frequently used to provide addi...
301 - 325 of 1,090