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Analysis of the repeatability of fuel spray indexes in a spray-guided direct-injection spark-ignition engine

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Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The development and research works on liquid fuel injection in spark-ignited direct injection (SIDI) engines, apart from so common in recent years simulation methods, still have a significant cognitive substrate. This is related to experimental research on repeatability of combustion process using multi- and mono-cylinder test engines and Rapid Compression Machines. The repeatability of preparation and delivery processes has immediate impact on repeatability of combustion process. Except for the necessity of obtaining the repeatability of fuel amounts, the repeatability of injected fuel spray is required. The penetration range and spray area in combustion chamber have direct impact on mixture creation and formation. The optical research on fuel injection has been made in order to determinate its repeatability. The research on unrepeatability of fuel spray propagation has been conducted using piezoelectric injectors of outward-opening type, being primary elements of the spray-guided combustion systems. The results of research were presented in the form of index of variation of the selected parameters. The evaluation of the results of the optical research concerns radial spray penetration and fuel spray velocity. Unrepeatability has been presented with coefficient of variation of radial penetration in relation to the time of injection duration. It has been observed that the coefficients of various parameters are lower with longer times of fuel injection.
Czasopismo
Rocznik
Strony
49--55
Opis fizyczny
Bibliogr. 20 poz., wykr.
Twórcy
autor
  • Faculty of Machines and Transport of Poznan University of Technology
Bibliografia
  • [1] Achleitner E., Bäcker H., Funaioli A. Direct injection systems for Otto engines. SAE Technical Paper 2007-01-1416, 2007, doi:10.4271/2007-01-1416.
  • [2] Aleiferis P.G., Serras-Pereira J., van Romunde Z., Caine J., Wirth M. Mechanisms of spray formation and combustion from a multi-hole injector with E85 and gasoline. Combustion and Flame. 2010, 157, 735-756.
  • [3] Arcoumanis C., Kamimoto T. Flow and combustion in reciprocating engines. Springer, Berlin – Heidelberg, Germany, 2008.
  • [4] Ashgriz N. Handbook of atomization and sprays. Theory and applications. Springer, New York 2011.
  • [5] Chen H., Reuss D.L., Sick V. Analysis of misfires in a direct injection engine using proper orthogonal decomposition. Experiments in Fluids. 2011, 51. doi:10.1007/s00348-011-1133-z.
  • [6] El-Asrag H.A., Iannetti A.C., Apte S.V. Large eddy simulations for radiation-spray coupling for a lean direct injector combustor. Combustion and Flame. 2014, 161, 510-524.
  • [7] Gavaises M., Tonini S., Marchi A., Theodorakakos A., Bouris D., Matteucci L. Modelling of internal and near-nozzle flow of a pintle-type outwards-opening gasoline piezo-injector. International Journal of Engine Research. 2006, 7, doi:10.1243/14680874JER00306.
  • [8] Kim S., Kim Y., Lee J. Analysis of the in-cylinder flow, mixture formation and combustion processes in a spray-guided GDI engine. SAE Technical Paper 2008-01-0142, 2008, doi:10.4271/2008-01-0142.
  • [9] Marchi A., Nouri J., Yan Y., Arcoumanis C. Spray stability of outwards opening pintle injectors for stratified direct injection spark ignition engine operation. International Journal of Engine Research. 2010, 11. doi:10.1243/14680874JER605.
  • [10] Oh H., Bae C. Effects of the injection timing on spray and combustion characteristics in a spray-guided DISI engine under lean-stratified operation. Fuel. 2013, 107, 225-235. doi:10.1016/j.fuel.2013.01.019.
  • [11] Peterson B., Reuss D.L., Sick V. On the ignition and flame development in a spray-guided direct-injection spark-ignition engine. Combustion and Flame. 2014, 161, 240-255. doi:10.1016/j.combustflame.2013.08.019.
  • [12] Pielecha I. Modelling of gasoline fuel spray penetration in SIDI engines. International Journal of Automotive Technology. 2014, 15(1), 47-55. doi:10.1007/s12239-014-0005-y.
  • [13] Rotondi R., Hélie J., Leger C., Mojtabi M., Wigley G. Multihole gasoline direct injection spray plumes. 23rd Annual Conference on Liquid Atomization and Spray Systems, Brno, Czech Republic, 2010.
  • [14] Sauter W., Pfeil J., Velji A., Spicher U., Laudenbach N., Altenschmidt F., Schaupp U. Application of particle image velocimetry for investigation of spray characteristics of an outward opening nozzle for gasoline direct injection. SAE Technical Paper 2006-01-3377, 2006. doi:10.4271/2006-01-3377.
  • [15] Skogsberg M., Dahlander P., Denbratt I. Spray shape and atomization quality of an outward-opening piezo gasoline DI injector. SAE Technical Paper 2007-01-1409, 2007. doi:10.4271/2007-01-1409.
  • [16] VanDerWege B., Han Z., Iyer C., Muñoz R., Yi J. Development and analysis of a spray-guided DISI combustion system concept. SAE Technical Paper 2003-01-3105, 2003. doi:10.4271/2003-01-3105.
  • [17] Waltner A., Lückert P., Schaupp U., Rau E., Kemmler R., Weller R. Future technology of the spark-ignition engine: spray-guided direct injection with piezo injector. The potential of synthetic fuels to meet future emission regulations, 27st International Vienna Engine Symposium 2006, Wien, Austria, 2006.
  • [18] Warnecke V., Achleitner E., Bäcker H. Development status of the Siemens VDO piezo injection system for spray-guided combustion. 27th International Vienna Motor Symposium, Wien Austria, 2006.
  • [19] Wisłocki K., Pielecha I., Czajka J., Maslennikov D. The influence of fuel injection parameters on the indexes of fuel atomization quality for a high pressure injection. SAE Technical Paper 2010-01-1499, 2010. doi:10.4271/2010-01-1499.
  • [20] Wisłocki K., Pielecha I., Czajka J., Maslennikov D. The qualitative spray characteristics of high-pressure gasoline injection system. 23rd European Conference on Liquid Atomization and Spray Systems – ILASS – Europe 2010, Brno 2010.
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-596c7925-09c5-4b77-92ee-8d552a9046e9
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