Atomization and Sprays I
ORAL · J35 · ID: 1764348
Presentations
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High-fidelity simulation and modeling of aerodynamic breakup of vaporizing droplets
ORAL
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Presenters
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Bradley Boyd
University of Canterbury
Authors
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Bradley Boyd
University of Canterbury
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Sid BECKER
University of Canterbury
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Yue Ling
University of South Carolina
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Fragmentation of liquid sheets of emulsion: competition between interfacial and viscous effects
ORAL
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Presenters
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Sara Gonzalez
University of California, Santa Barbara
Authors
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Sara Gonzalez
University of California, Santa Barbara
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Emilie Dressaire
University of California Santa Barbara
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Toward fully-resolved simulations of the bag breakup of a single drop
ORAL
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Presenters
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Yue Ling
University of South Carolina
Authors
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Yue Ling
University of South Carolina
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Taofiq Hasan H Mahmood
Baylor University
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The study of droplet internal circulation and its interaction with droplet deformation
ORAL
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Presenters
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Yushu Lin
Virginia Tech
Authors
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Yushu Lin
Virginia Tech
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John Palmore Jr
Mechanical Engineering, Virginia Tech, Virginia Tech
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High Speed Image Analysis of Liquid Sheet Atomization created by a Doublet Impinging Jet Injector
ORAL
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Presenters
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Evan Pruitt
San Diego State University
Authors
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Evan Pruitt
San Diego State University
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William Markiewicz
San Diego State University
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Carlos Gonzalez
San Diego State University
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Xiaofeng Liu
San Diego State University, Department of Aerospace Engineering, San Diego State University
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Fragmentation of Colliding Liquid Rims
ORAL
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Presenters
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Kaitao Tang
University of Oxford
Authors
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Kaitao Tang
University of Oxford
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Thomas A Adcock
University of Oxford
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Wouter D Mostert
Oxford, Department of Engineering Science, University of Oxford, United Kingdom, University of Oxford
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Manifold Death and the breakup of bags in atomizing flows
ORAL
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Publication: Chirco L, Maarek J, Popinet S, Zaleski S. Manifold death: a volume of fluid implementation of controlled topological changes in thin sheets by the signature method. Journal of Computational Physics. 2022 Oct 15;467:111468.
Presenters
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Stephane Zaleski
Institut Jean Le Rond d'Alembert, Sorbonne University, Sorbonne Universite, Sorbonne University
Authors
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Stephane Zaleski
Institut Jean Le Rond d'Alembert, Sorbonne University, Sorbonne Universite, Sorbonne University
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Jacob Maarek
Sorbonne University
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Yash KULKARNI
Sorbonne University
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Cesar I Pairetti
Sorbonne University
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Fuel Droplet Breakup in High-Pressure Propulsion Systems Using an Integrated Molecular-Dynamics and Direct Numerical Simulation Approach
ORAL
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Publication: 1) Submitted Manuscript: Prajesh Jangale, Ehsan Hosseini, Mohammad Zakertabrizi, and Dorrin Jarrahbashi; "Surface Tension and Evaporation Behavior in Liquid Fuel Droplets at Transcritical Conditions: Towards Bridging the Gap Between Molecular Dynamics and Continuum Simulations," Physics of Fluids
Presenters
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Prajesh Arvind Jangale
Texas A&M University
Authors
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Prajesh Arvind Jangale
Texas A&M University
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Dorrin Jarrahbashi
Texas A&M University
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