Analysis of Evaporation Process of Non-Axisymmetric Wall-Impinging Spray by Means of Laser Absorption Scattering Technique

An evaporation process plays an important role on the combustion and emission formation processes in a direct injection (D. I.) gasoline engines. An experimental study was conducted on the evaporation process of the non-axisymmetric wall-impinging spray injected by the hole type injector for a D. I....

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Veröffentlicht in:Nihon Kikai Gakkai rombunshuu. B hen 2008/08/25, Vol.74(744), pp.1853-1859
Hauptverfasser: SATO, Kiyotaka, TADOKORO, Tadashi, GAO, Jian, MATSUMOTO, Yuhei, NISHIDA, Keiya, YAMAKAWA, Masahisa
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container_end_page 1859
container_issue 744
container_start_page 1853
container_title Nihon Kikai Gakkai rombunshuu. B hen
container_volume 74
creator SATO, Kiyotaka
TADOKORO, Tadashi
GAO, Jian
MATSUMOTO, Yuhei
NISHIDA, Keiya
YAMAKAWA, Masahisa
description An evaporation process plays an important role on the combustion and emission formation processes in a direct injection (D. I.) gasoline engines. An experimental study was conducted on the evaporation process of the non-axisymmetric wall-impinging spray injected by the hole type injector for a D. I. gasoline engine. For the quantitative measurement of the vapor of the non-axisymmetric spray, the image processing technique using the Laser Absorption Scattering (LAS) principle was newly developed. The total amount of fuel vapor in the whole spray was obtained from the optical thickness image of the vapor and the Lambert Beer's law. The amount of fuel vapor in the wall-impinging spray is decreased compared with the free spray. In addition, the amount of fuel vapor is decreased as the distance between nozzle tip and the impingement wall is decreased.
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source Elektronische Zeitschriftenbibliothek - Frei zugängliche E-Journals; J-STAGE (Japan Science & Technology Information Aggregator, Electronic) Freely Available Titles - Japanese
subjects Atomization
Fuel Injection
Gasoline Engine
Laser-aided Diagnostics
title Analysis of Evaporation Process of Non-Axisymmetric Wall-Impinging Spray by Means of Laser Absorption Scattering Technique
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