Direct numerical simulation of SpraySyn burner: Impact of liquid solvent

Author:

Abdelsamie Abouelmagd12ORCID,Wiggers Hartmut34,Kruis Frank Einar45,Thévenin Dominique1

Affiliation:

1. Laboratory of Fluid Dynamics and Technical Flows, University of Magdeburg ‘Otto von Guericke’, Magdeburg, Germany

2. Lab of Fluid Mechanics, Mechanical Power Engineering Department, Faculty of Engineering (Elmattaria), Helwan University, Cairo, Egypt

3. EMPI, Institute for Energy and Materials Processe – Reactive Fluids, University of Duisburg-Essen, Duisburg, Germany

4. CENIDE, Center for Nanointegration Duisburg-Essen, University of Duisburg-Essen, Duisburg, Germany

5. NST, Institute of Technology for Nanostructures, University of Duisburg-Essen, Duisburg, Germany

Abstract

The SpraySyn burner is a new system recently developed at the University of Duisburg-Essen to investigate experimentally nanoparticle synthesis in spray flames for a variety of materials. The current project aims at performing direct numerical simulations with detailed physicochemical models of configurations closely related to this burner. The effect of using different solvents to produce titanium-dioxide (TiO[Formula: see text]) nanoparticles is discussed in this work. The two solvents considered are o-xylene and ethanol mixed in liquid state with tetraisopropoxide to form TiO[Formula: see text]. The liquid is injected into a pilot flame as dispersed spray with a carrier flow (dispersion gas). The resulting particle size distribution is examined as well. It is in particular observed that using ethanol leads to faster agglomeration and larger nanoparticles. This effect is qualitatively similar to that found when injecting smaller liquid spray droplets.

Publisher

SAGE Publications

Subject

General Physics and Astronomy,Automotive Engineering,Energy Engineering and Power Technology

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