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An Experimental Approach in the Impact of Electric Fields on Liquid Fuel Spray Injection
Technical Paper
2013-01-1607
ISSN: 0148-7191, e-ISSN: 2688-3627
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English
Abstract
This publication is the result of a multidisciplinary collaboration between the academia and the industry. An attempt to pre-ionize and influence the trajectory and the fluid mechanics of the injected fuel into an experimental injection system by means of electromagnetic fields was made.
This collaboration project started from research proposal, which aims at exploring the effects of a highly ionized environment on the fuel injection event and how the momentum of the injected fuel droplets may be affected by the electromagnetic fields in form of quantified variables, such as spray penetration, spreading angle and the spray axis angle.
An influence of the applied electromagnetic field on the fuel spray depending on the electrode configuration was observed and is presented and discussed in this publication.
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Authors
Citation
Mendez Hernandez, Y., Bardi, M., Viera, J., and Payri, R., "An Experimental Approach in the Impact of Electric Fields on Liquid Fuel Spray Injection," SAE Technical Paper 2013-01-1607, 2013, https://doi.org/10.4271/2013-01-1607.Also In
References
- Longjohn , R. , Dacre , B. and Hetherington , J. I. Electrical Conductivity of JP-8 + 100 Additives in Hydrocarbons and Fuels RMS Report Number: DEOS/RL/517/00 Nov. 2000
- Payri , R. and Araneo , L. and Shakal , J. and Soare , V. Phase doppler measurements: system set-up optimization for characterization of a diesel nozzle Journal of Mechanical Science and Technology 10.1007/s12206-008-0432-7 2008
- Pickett , M., L. , Genzale , C., L. , Manin , J. , Malbec , L-M , Hermant , L. Measurement Uncertainty of Liquid Penetration in Evaporating Diesel Sprays ILASS2011-111 2011
- Roisman , IV and Araneo , L. and Tropea , C. Effect of ambient pressure on penetration of a diesel spray International journal of multiphase flow 904 920 33 2007
- Payri R. , Garcia-Oliver , J. , Bardi , M. and Manin , J. Fuel Temperature Influence on Diesel Sprays in Inert and Reacting Conditions Applied Thermal Engineering 2012 35 10.1016/j.applthermaleng.2011.10.027 2012
- Payri , R. , Gimeno , J. , Viera , J. , Plazas , A. H. Schlieren visualization for transient vapor penetration and spreading angle of a prototype diesel direct-acting piezoelectric injector ICLASS-2012 - 1202 2012
- Payri , R. , Gimeno , J. , Bardi , M. , Plazas , A. H. Effect of injection rate shaping over Diesel spray development in non-reacting evaporative conditions ASME 2012 proceedings ICES2012 - 81206 2012
- Macian V. , Payri R. , Garcia A. and Bardi , M. Experimental Evaluation of the Best Approach for Diesel Spray Images Segmentation Experimental Techniques 10.1111/j.1747-1567.2011.00730.x
- Macián , V. , Bermúdez , V. , Payri , R. and Gimeno , J. New technique for determination of internal geometry of a Diesel nozzles with the use of silicone methodology Exp. Techniques 27 39 43 2003
- NIST Chemistry WebBook http://webbook.nist.gov/chemistry/fluid/ 10 23 2012
- Naber , J. and Siebers , D. Effects of Gas Density and Vaporization on Penetration and Dispersion of Diesel Sprays SAE Technical Paper 960034 1996 10.4271/960034
- Pastor J. V. , Arrègle J. , García J. M. and Zapata L. D. Segmentation of diesel spray images with log-likelihood ratio test algorithm for non-Gaussian distribution Applied Optics 46 6 2007
- Säufferer H. and Willmann K. Method and Apparatus for Influencing Thermo-Chemical Reactions U.S. Patent no. 4,091,779 1978