Search Results - "Hermanns, R.T.E."

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  1. 1

    Degradation modeling of high temperature proton exchange membrane fuel cells using dual time scale simulation by Pohl, E., Maximini, M., Bauschulte, A., vom Schloß, J., Hermanns, R.T.E.

    Published in Journal of power sources (01-02-2015)
    “…HT-PEM fuel cells suffer from performance losses due to degradation effects. Therefore, the durability of HT-PEM is currently an important factor of research…”
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  2. 2

    The Heat Flux Method for hybrid iron–methane–air flames by Hulsbos, M.R., Hermanns, R.T.E., Bastiaans, R.J.M., de Goey, L.P.H.

    Published in Combustion and flame (01-08-2024)
    “…Recently, a cyclic energy storage concept was proposed involving the use of metal powder as CO2-free energy carrier, known as the metal fuel cycle. In this…”
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    Comparison and evaluation of methods for the determination of flammability limits, applied to methane/hydrogen/air mixtures by Van den Schoor, F., Hermanns, R.T.E., van Oijen, J.A., Verplaetsen, F., de Goey, L.P.H.

    Published in Journal of hazardous materials (11-02-2008)
    “…Different methods, both experimental and numerical, to determine the flammability limits are compared and evaluated, exemplified by a determination of the…”
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  5. 5

    Effects of temperature and composition on the laminar burning velocity of CH 4 + H 2 + O 2 + N 2 flames by Hermanns, R.T.E., Konnov, A.A., Bastiaans, R.J.M., de Goey, L.P.H., Lucka, K., Köhne, H.

    Published in Fuel (Guildford) (2010)
    “…This work summarises available measurements of laminar burning velocities in CH 4 + H 2 + O 2 + N 2 flames at atmospheric pressure performed using a heat flux…”
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  6. 6

    Effects of temperature and composition on the laminar burning velocity of CH(4) + H(2) + O(2) + N(2) flames by Hermanns, R.T.E., Konnov, A A, Bastiaans, R.J.M., De Goey, L.P.H., Lucka, K, Koehne, H

    Published in Fuel (Guildford) (01-01-2010)
    “…This work summarises available measurements of laminar burning velocities in CH(4) + H(2) + O(2) + N(2) flames at atmospheric pressure performed using a heat…”
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    Journal Article
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    Analysis of the asymptotic structure of stoichiometric premixed CH 4–H 2–air flames by de Goey, L.P.H., Hermanns, R.T.E., Bastiaans, R.J.M.

    “…The classical asymptotic theory describing the structure of stoichiometric methane–air flames, introduced by Peters and Williams, has been extended to describe…”
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  9. 9

    Analysis of the flame thickness of turbulent flamelets in the thin reaction zones regime by de Goey, L.P.H., Plessing, T., Hermanns, R.T.E., Peters, N.

    Published in Proceedings of the Combustion Institute (01-01-2005)
    “…The thickness of the instantaneous flamelets in a turbulent flame brush on a weak-swirl burner burning in the thin reaction zones regime has been analysed…”
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  10. 10

    Measurements of absolute concentrations of CH in a premixed atmospheric flat flame by cavity ring-down spectroscopy by Evertsen, R., Van Oijen, J.A., Hermanns, R.T.E., De Goey, L.P.H., Ter Meulen, J.J.

    Published in Combustion and flame (2003)
    “…Absolute concentrations of CH in a premixed, atmospheric flat flame of CH 4 and air have been determined with cavity ring-down spectroscopy (CRDS). CH is…”
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  11. 11

    Measurements of the absolute concentrations of HCO and 1CH 2 in a premixed atmospheric flat flame by cavity ring-down spectroscopy by Evertsen, R, van Oijen, J.A, Hermanns, R.T.E, de Goey, L.P.H, ter Meulen, J.J

    Published in Combustion and flame (2003)
    “…Singlet methylene ( 1CH 2) and the formyl radical (HCO) have been studied in a premixed flat flame of CH 4 and air by cavity ring-down spectroscopy at 1 atm…”
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