Detailed Numerical Simulations of the Primary Atomization of a Turbulent Liquid Jet in Crossflow

Author:

Herrmann Marcus1

Affiliation:

1. Department of Mechanical and Aerospace Engineering, Arizona State University, Tempe, AZ 85287

Abstract

This paper presents numerical simulation results of the primary atomization of a turbulent liquid jet injected into a gaseous crossflow. Simulations are performed using the balanced force refined level set grid method. The phase interface during the initial breakup phase is tracked by a level set method on a separate refined grid. A balanced force finite volume algorithm together with an interface projected curvature evaluation is used to ensure the stable and accurate treatment of surface tension forces even on small scales. Broken off, small scale nearly spherical drops are transferred into a Lagrangian point particle description allowing for full two-way coupling and continued secondary atomization. The numerical method is applied to the simulation of the primary atomization region of a turbulent liquid jet (q=6.6, We=330, Re=14,000) injected into a gaseous crossflow (Re=570,000), analyzed experimentally by Brown and McDonell (2006, “Near Field Behavior of a Liquid Jet in a Crossflow,” ILASS Americas, 19th Annual Conference on Liquid Atomization and Spray Systems). The simulations take the actual geometry of the injector into account. Grid converged simulation results of the jet penetration agree well with experimentally obtained correlations. Both column/bag breakup and shear/ligament breakup modes can be observed on the liquid jet. A grid refinement study shows that on the finest employed grids (flow solver 64 points per injector diameter, level set solver 128 points per injector diameter), grid converged drop sizes are achieved for drops as small as one-hundredth the size of the injector diameter.

Publisher

ASME International

Subject

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

Reference29 articles.

1. Properties of Nonturbulent Round Liquid Jets in Uniform Gaseous Cross Flows;Aalburg;Atomization Sprays

2. Near Field Behavior of a Liquid Jet in a Crossflow;Brown

3. Investigation of the Effect of Injector Discharge Coefficient on Penetration of a Plain Liquid Jet Into a Subsonic Crossflow;Brown

4. Penetration of Liquid Jets in a Cross-Flow;Stenzler;Atomization Sprays

5. Primary Breakup of Nonturbulent Round Liquid Jets in Gas Crossflows;Mazallon;Atomization Sprays

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