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Dive into the research topics where Jonathan Johnsson is active.

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Featured researches published by Jonathan Johnsson.


Combustion Science and Technology | 2013

Are Sooting Premixed Porous-Plug Burner Flames One-Dimensional? A Laser-Based Experimental Investigation

Nils-Erik Olofsson; Henrik Bladh; Alexis Bohlin; Jonathan Johnsson; Per-Erik Bengtsson

The one-dimensional character of sooting premixed porous-plug (McKenna) burner flames has been examined, motivated by recent investigations where the one-dimensionality has been questioned. The examination employs laser diagnostic techniques to measure different characteristics: temperature using rotational coherent anti-Stokes Raman spectroscopy (CARS) and soot properties using laser-induced incandescence and elastic light scattering. Special attention has been paid to the influence of an outer shroud gas flow of either nitrogen or air. The nitrogen shroud gas leads to flame cooling at the outer edge, whereas the air shroud results in heating through the oxidation of CO/H2/soot. This generally results in a more inhomogeneous spatial particle size profile for the nitrogen shroud flame, with smaller particle sizes at the flame edge. The present results emphasize the need to characterize burner and operating conditions accurately, and also, regarding parameters that at first glance seem less relevant, such as the shroud gas, to provide useful data for comparison between laboratories.


Combustion Science and Technology | 2015

Soot Formation in Unstrained Diffusion Flames

Etienne Robert; Nils-Erik Olofsson; Henrik Bladh; Jonathan Johnsson; Per-Erik Bengtsson

The formation of soot particles has been investigated in CH4/O2 diffusion flames using a unique burner design, which allows the creation of a nearly unstrained planar reaction sheet. Spatially resolved soot volume fractions were obtained using laser-induced incandescence. These soot measurements and the sooting limits were obtained as a function of bulk flow across the flame and mixture strength. Samples were collected using thermophoretic sampling and analyzed using electron microscopy, revealing a broad range of microstructures including particles with unusually large primary diameters and carbon nanotubes. A theoretical model is presented, which confirms that under certain conditions the 1D nature of the flow field of the burner and the strong adverse temperature gradient on the fuel side of the flame result in the soot particles being held in place by thermophoretic forces and allowed to grow for very long time periods. Some of these so-called super aggregates reached sizes of tens of microns and became visible to the naked eye in the soot layer.


Applied Physics B | 2008

On the dependence of the laser-induced incandescence (LII) signal on soot volume fraction for variations in particle size

Henrik Bladh; Jonathan Johnsson; Per-Erik Bengtsson


Proceedings of the Combustion Institute2000-01-01+01:00; 33, pp 641-648 (2011) | 2011

Optical soot characterization using two-color laser-induced incandescence (2C-LII) in the soot growth region of a premixed flat flame

Henrik Bladh; Jonathan Johnsson; Nils-Erik Olofsson; Alexis Bohlin; Per-Erik Bengtsson


Applied Physics B | 2009

Influence of spatial laser energy distribution on evaluated soot particle sizes using two-colour laser-induced incandescence in a flat premixed ethylene/air flame

Henrik Bladh; Jonathan Johnsson; Per-Erik Bengtsson


Applied Physics B | 2011

Influence of soot particle aggregation on time-resolved laser-induced incandescence signals

Henrik Bladh; Jonathan Johnsson; Jenny Rissler; Hussam Abdulhamid; Nils-Erik Olofsson; Mehri Sanati; Joakim Pagels; Per-Erik Bengtsson


Applied Physics B | 2013

Soot sublimation studies in a premixed flat flame using laser-induced incandescence (LII) and elastic light scattering (ELS)

Nils-Erik Olofsson; Jonathan Johnsson; Henrik Bladh; Per-Erik Bengtsson


Applied Physics B | 2013

Influence of soot aggregate structure on particle sizing using laser-induced incandescence: importance of bridging between primary particles

Jonathan Johnsson; Henrik Bladh; Nils-Erik Olofsson; Per-Erik Bengtsson


Journal of the European Optical Society: Rapid Publications | 2012

Single scattering detection in turbid media using single-phase structured illumination filtering

Edouard Berrocal; Jonathan Johnsson; Elias Kristensson; Marcus Aldén


Proceedings of the Combustion Institute2000-01-01+01:00; 35, pp 3707-3713 (2015) | 2015

Local gas heating in sooting flames by heat transfer from laser-heated particles investigated using rotational CARS and LII

Emil Nordström; Nils-Erik Olofsson; Johan Simonsson; Jonathan Johnsson; Henrik Bladh; Per-Erik Bengtsson

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Etienne Robert

École Polytechnique Fédérale de Lausanne

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