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Simulation of primary fuel atomization processes at subcritical pressures.
Author(s) -
Marco Arienti
Publication year - 2013
Language(s) - English
Resource type - Reports
DOI - 10.2172/1089996
Subject(s) - injector , mechanics , advection , momentum (technical analysis) , flow (mathematics) , cartesian coordinate system , supersonic speed , primary (astronomy) , physics , mechanical engineering , engineering , thermodynamics , mathematics , geometry , astronomy , finance , economics
This report documents results from an LDRD project for the first-principles simulation of the early stages of spray formation (primary atomization). The first part describes a Cartesian embedded-wall method for the calculation of flow internal to a real injector in a fully coupled primary calculation. The second part describes the extension to an all-velocity formulation by introducing a momentum-conservative semi-Lagrangian advection and by adding a compressible term in the Poisson's equation. Accompanying the description of the new algorithms are verification tests for simple two-phase problems in the presence of a solid interface; a validation study for a scaled-up multi-hole Diesel injector; and demonstration calculations for the closing and opening transients of a single-hole injector and for the high-pressure injection of liquid fuel at supersonic velocity.

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