Benajes, J., Martín, J., García, A., Villalta, D., & Warey, A. (2017). Swirl ratio and post injection strategies to improve late cycle diffusion combustion in a light-duty diesel engine. Applied Thermal Engineering, 123, 365-376. doi:10.1016/j.applthermaleng.2017.05.101
O’Connor, J., Musculus, M. P. B., & Pickett, L. M. (2016). Effect of post injections on mixture preparation and unburned hydrocarbon emissions in a heavy-duty diesel engine. Combustion and Flame, 170, 111-123. doi:10.1016/j.combustflame.2016.03.031
Schöppe, D., Stahl, C., Krüger, G., & Dian, V. (2012). Servo-Driven Piezo Common Rail Diesel Injection System. ATZautotechnology, 12(2), 42-47. doi:10.1365/s35595-012-0107-y
[+]
Benajes, J., Martín, J., García, A., Villalta, D., & Warey, A. (2017). Swirl ratio and post injection strategies to improve late cycle diffusion combustion in a light-duty diesel engine. Applied Thermal Engineering, 123, 365-376. doi:10.1016/j.applthermaleng.2017.05.101
O’Connor, J., Musculus, M. P. B., & Pickett, L. M. (2016). Effect of post injections on mixture preparation and unburned hydrocarbon emissions in a heavy-duty diesel engine. Combustion and Flame, 170, 111-123. doi:10.1016/j.combustflame.2016.03.031
Schöppe, D., Stahl, C., Krüger, G., & Dian, V. (2012). Servo-Driven Piezo Common Rail Diesel Injection System. ATZautotechnology, 12(2), 42-47. doi:10.1365/s35595-012-0107-y
Y. Liu, R.D. Reitz, Optimizing HSDI Diesel Combustion and Emissions Using Multiple Injection Strategies, SAE Technical Paper 2005-01-0212 (2010). doi:10.4271/2005-01-0212.
Chen, B., Feng, L., Wang, Y., Ma, T., Liu, H., Geng, C., & Yao, M. (2019). Spray and flame characteristics of wall-impinging diesel fuel spray at different wall temperatures and ambient pressures in a constant volume combustion vessel. Fuel, 235, 416-425. doi:10.1016/j.fuel.2018.07.154
PASTOR, J., JAVIERLOPEZ, J., GARCIA, J., & PASTOR, J. (2008). A 1D model for the description of mixing-controlled inert diesel sprays. Fuel, 87(13-14), 2871-2885. doi:10.1016/j.fuel.2008.04.017
Pickett, L. M., Kook, S., & Williams, T. C. (2009). Transient Liquid Penetration of Early-Injection Diesel Sprays. SAE International Journal of Engines, 2(1), 785-804. doi:10.4271/2009-01-0839
M.J. Borz, Y. Kim, J. O’Connor, The Effects of Injection Timing and Duration on Jet Penetration and Mixing in Multiple-Injection Schedules, SAE Technical Paper 2016-01-0856 (2016). doi:10.4271/2016-01-0856.
Payri, R., Gimeno, J., Cardona, S., & Ayyapureddi, S. (2019). Experimental study of the influence of the fuel and boundary conditions over the soot formation in multi-hole diesel injectors using high-speed color diffused back-illumination technique. Applied Thermal Engineering, 158, 113746. doi:10.1016/j.applthermaleng.2019.113746
R. Payri, J. Gimeno, S. Cardona, S. Ayyapureddi, Measurement of Soot Concentration in a Prototype Multi-Hole Diesel Injector by High-Speed Color Diffused Back Illumination Technique, SAE Technical Paper 2017-01-2255 (2017). doi:10.4271/2017-01-2255.
R.S.G. Baert, P.J.M. Frijters, B. Somers, C.C.M. Luijten, W.D. Boer, W. De Boer, Design and operation of a high pressure, high temperature cell for HD diesel spray diagnostics: guidelines and results, SAE Technical Paper 2009-01-0649 (2009). doi:10.4271/2009-01-0649.
Meijer, M., Somers, B., Johnson, J., Naber, J., Lee, S.-Y., Malbec, L. M., … Bazyn, T. (2012). ENGINE COMBUSTION NETWORK (ECN): CHARACTERIZATION AND COMPARISON OF BOUNDARY CONDITIONS FOR DIFFERENT COMBUSTION VESSELS. Atomization and Sprays, 22(9), 777-806. doi:10.1615/atomizspr.2012006083
A. Viera, Effect of multiple injection strategies on the diesel spray formation and combustion using optical diagnostics, Ph.D. thesis, Universitat Politècnica de València, 2019.
Payri, R., García-Oliver, J. M., Bardi, M., & Manin, J. (2012). Fuel temperature influence on diesel sprays in inert and reacting conditions. Applied Thermal Engineering, 35, 185-195. doi:10.1016/j.applthermaleng.2011.10.027
Engine Combustion Network, https://ecn.sandia.gov/diesel-spray-combustion/, Online, 2010.
Payri, R., Gimeno, J., Mata, C., & Viera, A. (2017). Rate of injection measurements of a direct-acting piezoelectric injector for different operating temperatures. Energy Conversion and Management, 154, 387-393. doi:10.1016/j.enconman.2017.11.029
D.L. Siebers, Liquid-Phase Fuel Penetration in Diesel Sprays, SAE Technical Paper 980809 (1998). doi:10.4271/980809.
Payri, R., Bracho, G., Marti-Aldaravi, P., & Viera, A. (2017). NEAR FIELD VISUALIZATION OF DIESEL SPRAY FOR DIFFERENT NOZZLE INCLINATION ANGLES IN NON-VAPORIZING CONDITIONS. Atomization and Sprays, 27(3), 251-267. doi:10.1615/atomizspr.2017017949
L.M. Pickett, C.L. Genzale, J. Manin, L.-M. Malbec, L. Hermant, Measurement Uncertainty of Liquid Penetration in Evaporating Diesel Sprays, in: ILASS Americas, 23rd Annual Conference on Liquid Atomization and Spray Systems, May, ILASS-Americas, Ventura, CA (USA), 2011.
Benajes, J., Payri, R., Bardi, M., & Martí-Aldaraví, P. (2013). Experimental characterization of diesel ignition and lift-off length using a single-hole ECN injector. Applied Thermal Engineering, 58(1-2), 554-563. doi:10.1016/j.applthermaleng.2013.04.044
Payri, R., Salvador, F. J., Manin, J., & Viera, A. (2016). Diesel ignition delay and lift-off length through different methodologies using a multi-hole injector. Applied Energy, 162, 541-550. doi:10.1016/j.apenergy.2015.10.118
Pastor, J. V., Payri, R., Garcia-Oliver, J. M., & Briceño, F. J. (2013). Schlieren Methodology for the Analysis of Transient Diesel Flame Evolution. SAE International Journal of Engines, 6(3), 1661-1676. doi:10.4271/2013-24-0041
Payri, R., Gimeno, J., Bracho, G., & Vaquerizo, D. (2016). Study of liquid and vapor phase behavior on Diesel sprays for heavy duty engine nozzles. Applied Thermal Engineering, 107, 365-378. doi:10.1016/j.applthermaleng.2016.06.159
J.V. Pastor, R. Payri, J.M. García-Oliver, J.-G. Nerva, Schlieren Measurements of the ECN-Spray A Penetration under Inert and Reacting Conditions, SAE Technical Paper 2012-01-0456 (2012). doi:10.4271/2012-01-0456.
Payri, R., Salvador, F. J., Bracho, G., & Viera, A. (2017). Differences between single and double-pass schlieren imaging on diesel vapor spray characteristics. Applied Thermal Engineering, 125, 220-231. doi:10.1016/j.applthermaleng.2017.06.140
Payri, R., Viera, J. P., Gopalakrishnan, V., & Szymkowicz, P. G. (2017). The effect of nozzle geometry over the evaporative spray formation for three different fuels. Fuel, 188, 645-660. doi:10.1016/j.fuel.2016.10.064
Westlye, F. R., Penney, K., Ivarsson, A., Pickett, L. M., Manin, J., & Skeen, S. A. (2017). Diffuse back-illumination setup for high temporally resolved extinction imaging. Applied Optics, 56(17), 5028. doi:10.1364/ao.56.005028
D.L. Siebers, Scaling liquid-phase fuel penetration in diesel sprays based on mixing-limited vaporization, SAE Technical Paper 1999-01-0528 (1999). doi:10.4271/1999-01-0528.
Yu, W., Yang, W., Tay, K., Mohan, B., Zhao, F., & Zhang, Y. (2016). Macroscopic spray characteristics of kerosene and diesel based on two different piezoelectric and solenoid injectors. Experimental Thermal and Fluid Science, 76, 12-23. doi:10.1016/j.expthermflusci.2016.03.008
Pickett, L. M., Manin, J., Genzale, C. L., Siebers, D. L., Musculus, M. P. B., & Idicheria, C. A. (2011). Relationship Between Diesel Fuel Spray Vapor Penetration/Dispersion and Local Fuel Mixture Fraction. SAE International Journal of Engines, 4(1), 764-799. doi:10.4271/2011-01-0686
Bruneaux, G., & Maligne, D. (2009). Study of the Mixing and Combustion Processes of Consecutive Short Double Diesel Injections. SAE International Journal of Engines, 2(1), 1151-1169. doi:10.4271/2009-01-1352
Z. Wang, Experimental study on diesel spray with single and multiple injection under room temperature and low temperature, Ph.D. thesis, University of Birmingham, 2015.
Yu, W., Yang, W., Mohan, B., Tay, K. L., & Zhao, F. (2017). Macroscopic spray characteristics of wide distillation fuel (WDF). Applied Energy, 185, 1372-1382. doi:10.1016/j.apenergy.2015.12.051
Pastor, J. V., Garcia-Oliver, J. M., Pastor, J. M., & Vera-Tudela, W. (2015). ONE-DIMENSIONAL DIESEL SPRAY MODELING OF MULTICOMPONENT FUELS. Atomization and Sprays, 25(6), 485-517. doi:10.1615/atomizspr.2014010370
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