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S.M. Borzov V.D. Antsigin (1999)
V.D. Antsigin, S.M. Borzov, S.T. Vaskov et al., Burning process optimization based on analysis of flame parameters, Optoelectronics, Instrumentation and Data Processing, 1999, No. 5, P. 3–11.
A.D. Neuimin (1991)
Experience of use the solid-electrolytic gas analysers for combustion control
V.I. Kozik S.M. Borzov (2004)
Optimization of combustion process for gaseous hydrocarbons through variation of fuel mixture contentThermophysics and Aeromechanics, 11
O.N. Novikov A.L. Shkarovsky (2002)
A.L. Shkarovsky, O.N. Novikov, and A.N. Okatiev, Environment principles of fuel combustion control, Datchiki & Systemy, 2002, No. 10, P. 41–44.
V.I. Kozik S.M. Borzov (2002)
(Russia, Novosibirsk, June 10–13, 2002), Novosibirsk, 2002, P
Abstract The process of gas hydrocarbon combustion was tested in real (industrial) conditions on boilers with many burners. For key operation modes, the main regularities of emission from single flames were studied. The system of remote diagnostics was developed; it is suitable for selective monitoring of a single burner in the multi-burner configuration and supplies useful information for the operator about relative intensity of flames, oxygen, and hydrogen concentrations in flue gases. This information is valuable for optimization of gaseous fuel combustion. The equipment set was used in development of an automatic control system for processes at a heat station.
Thermophysics and Aeromechanics – Springer Journals
Published: Jun 1, 2006
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