Search Results - "De Goey, L.P.H."

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  1. 1

    Commercial Naphtha Blends for Partially Premixed Combustion by Leermakers, C.A.J., Bakker, P.C., Somers, L.M.T., de Goey, L.P.H., Johansson, B.H.

    “…Partially Premixed Combustion has shown the potential of low emissions of nitrogen oxides (NOx) and soot with a simultaneous improvement in fuel efficiency…”
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  2. 2

    Butanol-Diesel Blends for Partially Premixed Combustion by Leermakers, C.A.J., Bakker, P.C., Somers, L.M.T., de Goey, L.P.H., Johansson, B.H.

    “…Partially Premixed Combustion has shown the potential of high efficiency, emissions of nitrogen oxides (NOx) and soot below future emissions regulations, and…”
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  3. 3

    State-of-the-art in premixed combustion modeling using flamelet generated manifolds by van Oijen, J.A., Donini, A., Bastiaans, R.J.M., ten Thije Boonkkamp, J.H.M., de Goey, L.P.H.

    Published in Progress in energy and combustion science (01-11-2016)
    “…Flamelet based chemical reduction techniques are very promising methods for efficient and accurate modeling of premixed flames. Over the years the Flamelet…”
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  4. 4

    Analytical solutions for prediction of the ignition time of wood particles based on a time and space integral method by Haseli, Y., van Oijen, J.A., de Goey, L.P.H.

    Published in Thermochimica acta (20-11-2012)
    “…► A simple model for prediction of the ignition time of a wood particle is presented. ► The formulation is given for both thermally thin and thermally thick…”
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  5. 5

    Premixed combustion on ceramic foam burners by BOUMA, P. H, DE GOEY, L. P. H

    Published in Combustion and flame (01-10-1999)
    “…Combustion of a lean premixed methane-air mixture stabilized on a ceramic foam burner has been studied. The stabilization of the flame in the radiant mode has…”
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  6. 6

    Biomass pyrolysis in a heated-grid reactor: Visualization of carbon monoxide and formaldehyde using Laser-Induced Fluorescence by Prins, M.J., Li, Z.S., Bastiaans, R.J.M., van Oijen, J.A., Aldén, M., de Goey, L.P.H.

    “…The development of improved biomass pyrolysis models is vital for more accurate modelling and design of biomass conversion equipment. Such improved models must…”
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  7. 7

    Effects of exhaust gas recirculation at various loads on diesel engine performance and exhaust particle size distribution using four blends with a research octane number of 70 and diesel by Wang, Shuli, Zhu, Xinda, Somers, L.M.T., de Goey, L.P.H.

    Published in Energy conversion and management (01-10-2017)
    “…•Considerable reduction in soot emissions of the four blends compared to diesel.•The four blends are capable to produce low soot and nitroxides emissions…”
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  8. 8

    Experimental study of Polycyclic Aromatic Hydrocarbons (PAHs) in n-Heptane laminar diffusion flames from1.0 to 3.0 bar by Zhou, Lei, Xiong, Gaihua, Zhang, Mengjie, Chen, Longfei, Ding, Shirun, de Goey, L.P.H.

    Published in Fuel (Guildford) (01-12-2017)
    “…As PAHs (Polycyclic Aromatic Hydrocarbons) are the main precursor of soot formation during the combustion, the investigation of PAHs formation is essential for…”
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  9. 9

    Aerosol ignition in iron powder flames stabilized on a new type of jet-in-hot-coflow burner by Hameete, J., Boone, L.J., Homan, T.A.M., Shoshyn, Y., Dam, N.J., de Goey, L.P.H.

    “…A novel Jet-in-Hot-Coflow burner for the combustion of solid metallic particles is presented. This system features an electrically preheated coflow to ignite…”
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  10. 10

    Modeling biomass particle pyrolysis with temperature-dependent heat of reactions by Haseli, Y., van Oijen, J.A., de Goey, L.P.H.

    “…An accurate formulation of energy conservation to model pyrolysis of a biomass particle needs to account for variations in the heat of reaction with…”
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  11. 11

    Direct Injection of Diesel-Butane Blends in a Heavy Duty Engine by Leermakers, C.A.J., Van den Berge, B., Luijten, C.C.M., de Goey, L.P.H., Jaasma, S.

    “…Increasing fuel prices keep bringing attention to alternative, cheaper fuels. Liquefied Petroleum Gas (LPG) has been well known for decades as an alternative…”
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  12. 12

    Burning velocity measurement of lean methane-air flames in a new nanosecond DBD microplasma burner platform by Elkholy, A., Shoshyn, Y., Nijdam, S., van Oijen, J.A., van Veldhuizen, E.M., Ebert, U., de Goey, L.P.H.

    Published in Experimental thermal and fluid science (01-07-2018)
    “…•A new burner configuration based on a DBD microplasma reactor is presented.•Characteristics of the new burner were studied using optical emission…”
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  13. 13

    Laminar burning velocity of lean H2–CO mixtures at elevated pressure using the heat flux method by Goswami, M., Bastiaans, R.J.M., Konnov, A.A., de Goey, L.P.H.

    Published in International journal of hydrogen energy (16-01-2014)
    “…Laminar burning velocity measurements of 50:50 and 85:15% (by volume) H2–CO mixtures with O2–N2 and O2–He oxidizers were performed at lean conditions…”
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  14. 14

    A detailed one-dimensional model of combustion of a woody biomass particle by Haseli, Y., van Oijen, J.A., de Goey, L.P.H.

    Published in Bioresource technology (01-10-2011)
    “…► A 1-D model of combustion of a woody biomass particle is presented and validated. ► The developed computer code provides a deeper insight into the biomass…”
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  15. 15

    Experimental and modeling study of the effect of elevated pressure on lean high-hydrogen syngas flames by Goswami, M., van Griensven, J.G.H., Bastiaans, R.J.M., Konnov, A.A., de Goey, L.P.H.

    Published in Proceedings of the Combustion Institute (01-01-2015)
    “…New laminar burning velocity measurements of 85:15% (by volume) H2–CO and H2–N2 mixtures with O2–He oxidizer are reported at lean conditions and elevated…”
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  16. 16

    Particle Equilibrium Composition model for iron dust combustion by van Gool, C.E.A.G., Thijs, L.C., Ramaekers, W.J.S., van Oijen, J.A., de Goey, L.P.H.

    “…Flame propagation of iron powder in air is numerically studied. The present work introduces a chemical equilibrium model, which allows a detailed…”
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  17. 17

    Validation of a novel numerical model for the electric currents in burner-stabilized methane–air flames by Speelman, N., Kiefer, M., Markus, D., Maas, U., de Goey, L.P.H., van Oijen, J.A.

    Published in Proceedings of the Combustion Institute (01-01-2015)
    “…This study presents measurements of electric currents in flat flames, induced by externally applied electric potentials. In addition to these measurements, a…”
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  18. 18

    Porous Fuel Air Mixing Enhancing Nozzle (PFAMEN) by Reijnders, J.J.E., Boot, M.D., Luijten, C.C.M., de Goey, L.P.H., Frijters, P.J.M.

    Published in SAE International journal of engines (01-01-2009)
    “…One of the challenges with conventional diesel engines is the emission of soot. To reduce soot emission whilst maintaining fuel efficiency, an important…”
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  19. 19

    Experimental evaluation of DC electric field effect on the thermoacoustic behaviour of flat premixed flames by Volkov, E.N., Kornilov, V.N., de Goey, L.P.H.

    Published in Proceedings of the Combustion Institute (01-01-2013)
    “…One promising approach to eliminate thermoacoustic instabilities in combustion appliances is the use of adaptive control of the flame/burner acoustic transfer…”
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  20. 20

    The effect of a DC electric field on the laminar burning velocity of premixed methane/air flames by van den Boom, J.D.B.J., Konnov, A.A., Verhasselt, A.M.H.H., Kornilov, V.N., de Goey, L.P.H., Nijmeijer, H.

    “…The present study addresses the influence of a DC electric field on the laminar burning velocity (SL) of premixed flat methane/air flames. Experiments have…”
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