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A Study on the Relationship between ECN Spray D and Marine-Sized Nozzles Using FGM Combustion Model Eindhoven University Of Technology

SAE Technical Papers (1906-current) Available online

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Format:
Book
Conference/Event
Author/Creator:
Di Matteo, Andrea, author.
Contributor:
Somers, Bart
Conference Name:
WCX SAE World Congress Experience (2024-04-16 : Detroit, Michigan, United States)
Language:
English
Physical Description:
1 online resource cm
Place of Publication:
Warrendale, PA SAE International 2024
Summary:
Present work investigates the relationship between the combustion parameters of a well-known ECN heavy-duty nozzle called Spray D and marine-size nozzles. The study is carried out in OpenFOAM software within the framework of RANS turbulence modelling, using a flamelet based tabulation technique known as FGM to model the combustion. The large nozzles are tested in a constant volume chamber representative of marine engines, for which a CFD setup is validated against inert data in literature. The reacting results have been validated first with experimental data, initializing the domain with a highly reactive environment (23% oxygen) and engine-like swirl. Then, a less reactive initial condition was set up in the domain (15% oxygen) without swirl, to achieve a Spray D-like environment. The main goal is to study the variation of the combustion parameters Ignition Delay Time (IDT) and Lift-Off Length (LOL) as function of nozzle diameter, leading to a mathematical correlation to estimate the IDT and the LOL for different nozzle sizes from the well-known Spray D. The resulting dependency was well captured by a polynomial relationship y(x) = axb + c. Only the smaller nozzle of 300μm, does not follow this trend, possibly confining its validity to a range of diameters larger than two times the Spray D nozzle
Notes:
Vendor supplied data
Publisher Number:
2024-01-2695
Access Restriction:
Restricted for use by site license

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