The Influence of Actual Layout and Off-Axis Needle Stroke on Diesel Nozzle Flow Under Ballistic Needle Displacement

Author:

Palmieri Fulvio1

Affiliation:

1. Dipartimento di Ingegneria, Università degli Studi Roma Tre, Via della Vasca Navale 79-81, Roma 00146, Italy e-mail:

Abstract

The injection of small amount of diesel fuel relies on the shortening of energizing signal. In such injection conditions, the needle does not reach the mechanical stroke-end and its displacement is defined as ballistic. Some specific experimental work has been performed on how the dynamics of injector needle is reflected on the fuel flow pattern within the nozzle. Due to the intrinsic difficulties of the field, just single axial hole injectors have been optically investigated in real time, by means of the most advanced X-ray techniques. In the current study, based on 3D-computational fluid dynamics modeling, the investigation has been extended to multihole injector layouts, under typical pilot/split injection conditions, namely, high injection pressure and low needle lift. The role of different factors on the flow development within the nozzle has been shown and discussed; the investigations have taken into account actual injector tip layouts and the response to the needle off-axis operating conditions. Results are presented highlighting the flow features within the nozzle and their reflects on the hole-to-hole differences.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference14 articles.

1. Kastengren, L., Powell, C. F., Liu, Z., Fezzaa, K., and Wang, J., 2009, “High-Speed X-Ray Imaging of Diesel Injector Needle Motion,” ASME, Paper No. ICES2009-76032.10.1115/ICES2009-76032

2. The Effects of Diesel Injector Needle Motion on Spray Structure;ASME J. Eng. Gas Turbines Power,2011

3. Öing, H., 2000, “Entwicklung Eines Neuen Dieselmotorischen Injektorkonzeptes für Zukünftige Emissionsgrenzwerte,” Doktor-Ingenieur Genehmigte Dissertation, Fachbereich Maschinenbau – Universität Hannover, Hannover, Germany.

4. Einfluß von Einspritzverlauf und Düsenauslegung auf das Brennverhalten bei Pkw Common Rail Einspritzung; in Motorische Verbrennung – Aktuelle Probleme und Moderne Lösungsansätze,1999

5. Piezoelectric Fuel Injection: Pulse-to-Pulse Coupling and Flow Rate Estimation;IEEE/ASME Trans. Mechatron.,2011

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