A DETAILED NUMERICAL INVESTIGATION OF TWO-PHASE FLOWS INSIDE A PLANAR FLOW-BLURRING ATOMIZER
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Published:2024
Issue:1
Volume:34
Page:1-20
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ISSN:1044-5110
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Container-title:Atomization and Sprays
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language:en
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Short-container-title:Atomiz Spr
Author:
Ling Yue,Jiang Lulin
Abstract
Flow-blurring atomization is an innovative twin-fluid atomization approach that has demonstrated superior effectiveness in producing fine sprays compared to traditional airblast atomization methods. In flow-blurring atomizers, the high-speed gas flow is directed perpendicular to the liquid jet. Under specific geometric and physical conditions, the gas penetrates back into the liquid nozzle, resulting in a highly unsteady bubbly two-phase mixing zone. Despite the remarkable atomization performance of flow-blurring atomizers, the underlying dynamics of the two-phase flows and breakup mechanisms within the liquid nozzle remain poorly understood, primarily due to the challenges in experimental measurements of flow details. In this study, detailed interface-resolved numerical simulations are conducted to investigate the two-phase flows generated by a planar flow-blurring atomizer. By varying key dimensionless parameters, including the dynamic-pressure ratio, density ratio, and Weber number, over wide ranges, we aim to comprehensively characterize their effects on the two-phase
flow regimes and breakup dynamics.
Subject
General Chemical Engineering
Reference46 articles.
1. Afkhami, S., Buongiorno, J., Guion, A., Popinet, S., Saade, Y., Scardovelli, R., and Zaleski, S., Transition in a Numerical Model of Contact Line Dynamics and Forced Dewetting, J. Comput. Phys., vol. 374, pp. 1061-1093, 2018. 2. Afkhami, S. and Bussmann, M., Height Functions for Applying Contact Angles to 3D VOF Simulations, Int. J. Numer. Meth. Fluids, vol. 61, no. 8, pp. 827-847, 2009. 3. Agbaglah, G., Chiodi, R., and Desjardins, O., Numerical Simulation of the Initial Destabilization of an Air-Blasted Liquid Layer, J. Fluid Mech., vol. 812, pp. 1024-1038, 2017. 4. Agrawal, S.R., Jiang, L., Agrawal, A.K., and Midkiff, K.C., High-Speed Visualization of Two-Phase Flow inside a Transparent Fuel Injector, Proc. of the 8th U.S. National Combustion Meeting, Article ID 070HE-0317, 2013. 5. Ates, C., Giovannoni, V., Burkle, N., Keller, M., Okraschevski, M., Koch, R., and Bauer, H.J., Analysis of the Backflow Recirculation in Flow Blurring Nozzles via Lagrangian Coherent Structures, ICLASS 2021, 15th, Triennial Int. Conf. on Liquid Atomization and Spray Systems, Edinburgh, UK, 2021.
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2 articles.
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