Evaluation of the impact of initial temperature of the constant volume combustion chamber on a determination of ignition delay of N-heptane

Several methods have been applied to determine the ignition delays as so the cetane number of fuels including the shock tube, rapid machine compression (RMC), Cooperative Fuel Research (CFR). In the last decades, the constant-volume combustion chamber system designed to measure ignition delay of low...

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Veröffentlicht in:Journal of physics. Conference series 2021-03, Vol.1826 (1), p.12077
Hauptverfasser: Lima, Monizi C., Oliveira, Jackson S., Nunes, Carlos S., Simões, Paulo L. F., Couto, Paulo Roberto. G., Magalhaes, Marcelo Ricardo, Silva, Walmir Sergio da, Siqueira, José Gabriel S.A., Batista, Luciano N.
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container_issue 1
container_start_page 12077
container_title Journal of physics. Conference series
container_volume 1826
creator Lima, Monizi C.
Oliveira, Jackson S.
Nunes, Carlos S.
Simões, Paulo L. F.
Couto, Paulo Roberto. G.
Magalhaes, Marcelo Ricardo
Silva, Walmir Sergio da
Siqueira, José Gabriel S.A.
Batista, Luciano N.
description Several methods have been applied to determine the ignition delays as so the cetane number of fuels including the shock tube, rapid machine compression (RMC), Cooperative Fuel Research (CFR). In the last decades, the constant-volume combustion chamber system designed to measure ignition delay of low-volatility fuels were developed. The purpose of this article was analysed the behavior of the combustion and ignition delay of the n-heptane obtained in Fuel Ignition Tester (FIT). The N-heptane is the primary reference fuel for determination of ignition delays. The preliminary results are important because small temperature changes can generate wrong results of ignition delay.
doi_str_mv 10.1088/1742-6596/1826/1/012077
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subjects Cetane number
Combustion chambers
Delay
Fuels
Heptanes
Ignition
Physics
title Evaluation of the impact of initial temperature of the constant volume combustion chamber on a determination of ignition delay of N-heptane
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