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Matthew Fu
Princeton University
29Publications
4H-index
79Citations
Publications 28
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#1Alex G. Novoselov (Princeton University)H-Index: 1
#2Christopher B. Reuter (Princeton University)H-Index: 8
Last.Michael E. Mueller (Princeton University)H-Index: 17
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Abstract Turbulence, low-temperature chemistry, and their interactions in the form of turbulent cool flames are critical to understanding and improving advanced engines. Design of such engines requires tractable simulations which in turn necessitate turbulent combustion models that can account for cool flames. While manifold-based turbulent combustion models are an attractive option for hot flames, their applicability to cool flames is not yet fully understood. This is partially due to the lack ...
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#1Katherine Kokmanian (Princeton University)H-Index: 1
#2Sven Scharnowski (Bundeswehr University Munich)H-Index: 12
Last.Marcus Hultmark (Princeton University)H-Index: 20
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A new nanoscale thermal anemometry probe (NSTAP) was designed and fabricated to measure mass flux in supersonic flows. This sensor was evaluated in the Trisonic Wind Tunnel Munich (TWM) at both subsonic and supersonic speeds. Subsonic compressible flow tests were performed to confirm the new sensor's repeatability and to compare its behaviour to measurements from a conventional cylindrical hot-wire, while supersonic tests were performed to investigate the nature of the convective heat transfer f...
1 CitationsSource
#1Isnardo ArenasH-Index: 3
#2Edgardo GarciaH-Index: 1
Last.Stefano LeonardiH-Index: 42
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Direct Numerical Simulations of two superposed fluids in a channel with a textured surface on the lower wall have been carried out. A parametric study varying the viscosity ratio between the two fluids has been performed to mimic both {\bf idealised} super hydrophobic and liquid infused surfaces and assess its effect on the frictional, form and total drag for three different textured geometries: longitudinal square bars, transversal square bars and staggered cubes. The interface between the two ...
3 CitationsSource
#1Matthew Fu (Princeton University)H-Index: 4
#2Ting Hsuan Chen (Princeton University)H-Index: 2
Last.Marcus Hultmark (Princeton University)H-Index: 20
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Liquid-infused surfaces present a novel coating for passive drag reduction in turbulent flows. Conceptually similar to superhydrophobic surfaces, which are composed of air pockets trapped within hydrophobic roughness, liquid-infused surfaces instead rely on a preferentially wetting, liquid lubricant to create a heterogeneous surface of fluid–solid and fluid–fluid interfaces. The mobility of the lubricant within the textures allows the fluid–fluid interfaces to support a finite interfacial slip v...
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#1Matthew Fu (Princeton University)H-Index: 4
#2Yuyang Fan (Princeton University)H-Index: 3
Last.Marcus Hultmark (Princeton University)H-Index: 20
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1 CitationsSource
#1Milad Samie (University of Melbourne)H-Index: 2
#2Ivan Marusic (University of Melbourne)H-Index: 50
Last.Alexander J. Smits (Princeton University)H-Index: 51
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8 CitationsSource
#1C P ByersH-Index: 1
#2Matthew FuH-Index: 4
Last.Marcus HultmarkH-Index: 20
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#1Christopher B. Reuter (Princeton University)H-Index: 8
#2Omar R. Yehia (Princeton University)H-Index: 2
Last.Yiguang Ju (Princeton University)H-Index: 57
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1 CitationsSource
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