Development of blend composition of aviation kerosene surrogate for the simulation of workflow of gas turbine engine combustion chamber
In this paper, the criteria for determining the composition and physicochemical properties of aviation kerosene were formulated. The data on the physicochemical properties of known kerosene surrogates were systematized and classified. The main classes of individual chemical components of aviation ke...
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Samara National Research University
2019-04-01
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Online Access: | https://journals.ssau.ru/index.php/vestnik/article/view/6546 |
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doaj-5ef8ca84c4a7450596102a3a990b930f2020-11-25T00:40:40ZengSamara National Research UniversityВестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение2542-04532541-75332019-04-01181788710.18287/2541-7533-2019-18-1-78-876156Development of blend composition of aviation kerosene surrogate for the simulation of workflow of gas turbine engine combustion chamberS. G. Matveev0Samara National Research University, Russian FederationIn this paper, the criteria for determining the composition and physicochemical properties of aviation kerosene were formulated. The data on the physicochemical properties of known kerosene surrogates were systematized and classified. The main classes of individual chemical components of aviation kerosene were determined, and the main representatives of these classes which were used in the preparation of surrogates, were investigated. Four- and six-component kerosene substitutes are proposed. The physical properties of the developed surrogates were validated according to the flow characteristics and the spray angle of the flame of a centrifugal fuel nozzle. The dependence of the flame speed on the composition of the mixture of developed kerosene surrogates was determined. The results of determining the composition of combustion products during the combustion of TS-1 brand aviation kerosene and its surrogates in a model combustion chamber were compared.https://journals.ssau.ru/index.php/vestnik/article/view/6546Gas turbine enginecombustion chamberkerosene surrogatecombustionenvironmental characteristicssimulation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
S. G. Matveev |
spellingShingle |
S. G. Matveev Development of blend composition of aviation kerosene surrogate for the simulation of workflow of gas turbine engine combustion chamber Вестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение Gas turbine engine combustion chamber kerosene surrogate combustion environmental characteristics simulation |
author_facet |
S. G. Matveev |
author_sort |
S. G. Matveev |
title |
Development of blend composition of aviation kerosene surrogate for the simulation of workflow of gas turbine engine combustion chamber |
title_short |
Development of blend composition of aviation kerosene surrogate for the simulation of workflow of gas turbine engine combustion chamber |
title_full |
Development of blend composition of aviation kerosene surrogate for the simulation of workflow of gas turbine engine combustion chamber |
title_fullStr |
Development of blend composition of aviation kerosene surrogate for the simulation of workflow of gas turbine engine combustion chamber |
title_full_unstemmed |
Development of blend composition of aviation kerosene surrogate for the simulation of workflow of gas turbine engine combustion chamber |
title_sort |
development of blend composition of aviation kerosene surrogate for the simulation of workflow of gas turbine engine combustion chamber |
publisher |
Samara National Research University |
series |
Вестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение |
issn |
2542-0453 2541-7533 |
publishDate |
2019-04-01 |
description |
In this paper, the criteria for determining the composition and physicochemical properties of aviation kerosene were formulated. The data on the physicochemical properties of known kerosene surrogates were systematized and classified. The main classes of individual chemical components of aviation kerosene were determined, and the main representatives of these classes which were used in the preparation of surrogates, were investigated. Four- and six-component kerosene substitutes are proposed. The physical properties of the developed surrogates were validated according to the flow characteristics and the spray angle of the flame of a centrifugal fuel nozzle. The dependence of the flame speed on the composition of the mixture of developed kerosene surrogates was determined. The results of determining the composition of combustion products during the combustion of TS-1 brand aviation kerosene and its surrogates in a model combustion chamber were compared. |
topic |
Gas turbine engine combustion chamber kerosene surrogate combustion environmental characteristics simulation |
url |
https://journals.ssau.ru/index.php/vestnik/article/view/6546 |
work_keys_str_mv |
AT sgmatveev developmentofblendcompositionofaviationkerosenesurrogateforthesimulationofworkflowofgasturbineenginecombustionchamber |
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1725288858552107008 |