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Application of Synthesis Gas to Intensify Kerosene Combustion in a Supersonic Flow
by
Tupikin, A. V
, Abashev, V. M
, Tretyakov, P. K
, Savarovskii, A. A
, Kuranov, A. L
, Kolosenok, S. V
in
Air flow
/ Aircraft
/ Chemical activity
/ Combustion chambers
/ Combustion control
/ Combustion efficiency
/ Efficiency
/ Experiments
/ Flow velocity
/ Hydrocarbons
/ Hydrogen
/ Kerosene
/ Mixtures
/ Pressure distribution
/ Supersonic flow
/ Synthesis gas
2020
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Application of Synthesis Gas to Intensify Kerosene Combustion in a Supersonic Flow
by
Tupikin, A. V
, Abashev, V. M
, Tretyakov, P. K
, Savarovskii, A. A
, Kuranov, A. L
, Kolosenok, S. V
in
Air flow
/ Aircraft
/ Chemical activity
/ Combustion chambers
/ Combustion control
/ Combustion efficiency
/ Efficiency
/ Experiments
/ Flow velocity
/ Hydrocarbons
/ Hydrogen
/ Kerosene
/ Mixtures
/ Pressure distribution
/ Supersonic flow
/ Synthesis gas
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Application of Synthesis Gas to Intensify Kerosene Combustion in a Supersonic Flow
by
Tupikin, A. V
, Abashev, V. M
, Tretyakov, P. K
, Savarovskii, A. A
, Kuranov, A. L
, Kolosenok, S. V
in
Air flow
/ Aircraft
/ Chemical activity
/ Combustion chambers
/ Combustion control
/ Combustion efficiency
/ Efficiency
/ Experiments
/ Flow velocity
/ Hydrocarbons
/ Hydrogen
/ Kerosene
/ Mixtures
/ Pressure distribution
/ Supersonic flow
/ Synthesis gas
2020
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Application of Synthesis Gas to Intensify Kerosene Combustion in a Supersonic Flow
Journal Article
Application of Synthesis Gas to Intensify Kerosene Combustion in a Supersonic Flow
2020
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Overview
AbstractThis study experimentally confirms the intensification of kerosene combustion in the case where a mixture simulating steam reformation products in a model combustion chamber with a supersonic velocity of the flow at the inlet. It is shown that the used mixture has a higher chemical activity than ethylene. The use of steam reformation products of hydrocarbon or synthetic propellants in schemes with pulse-periodic combustion control increases combustion efficiency without the use of special design solutions for organizing initiation and stable combustion.
Publisher
Springer Nature B.V
Subject
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