Search Results - "Sharipov, A. S."

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  1. 1

    Diffusion Coefficients of Electronically Excited Molecules by Sharipov, A. S., Loukhovitski, B. I., Pelevkin, A. V.

    Published in Fluid dynamics (01-08-2023)
    “…The influence of electronic excitation of molecules on their diffusion coefficients is studied. Based on the electrical properties of some molecules (O 2 , OH,…”
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    On the Refractive Index of a Gas under High-Thermal-Nonequilibrium Conditions by Lukhovitskii, B. I., Sharipov, A. S., Arsent’ev, I. V., Kuzmitskii, V. V., Penyazkov, O. G.

    “…An analysis has been made of the influence of the excitation of internal degrees of freedom of molecules on the refractive index (n – 1) under the conditions…”
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  3. 3

    On the Diffeomorphism Groups of Foliated Manifolds by Narmanov, A. Ya, Sharipov, A. S.

    “…In this paper, we introduce a certain topology on the group Diff F ( M ) of all C r -diffeomorphisms of the foliated manifold ( M ; F ), where r ≥ 0. This…”
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  4. 4

    Physics and chemistry of the influence of excited molecules on combustion enhancement by Starik, A. M., Loukhovitski, B. I., Sharipov, A. S., Titova, N. S

    “…The paper addresses detailed analysis of kinetic processes in the H2−O2, CO−O2 and CH4−O2-reactive systems upon the presence of singlet oxygen molecules…”
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  5. 5

    Treatment of the Thermal Nonequilibrium and Ionization Effects on the Refractive Index of a Reacting Gas: Atmospheric Air and Combustion Products by Loukhovitski, B. I., Kadochnikov, I. N., Arsentiev, I. V., Sharipov, A. S.

    Published in Fluid dynamics (2024)
    “…Using thermal nonequilibrium physicochemical kinetics models, which make it possible to numerically study the reacting gas flows with allowance for the…”
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  6. 6

    Kinetics of Ignition and Combustion in the Al–CH4–O2 System by Starik, A. M, Kuleshov, P. S, Sharipov, A. S, Titova, N. S

    Published in Energy & fuels (16-10-2014)
    “…The extensive analysis of chain mechanism development in the Al–CH4–O2 mixture is conducted on the basis of a novel kinetic model taking into account the…”
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  7. 7

    Theoretical and Experimental Determination of the Rate Constant of the Nonadiabatic Chemiluminescent Reaction H + O + N2 = OH + N2 by Lukhovitskii, B. I., Sharipov, A. S., Arsent’ev, I. V., Pelevkin, A. V., Skilond’, A. V., Kisel’, Yu. S., Krivosheyev, P. N.

    “…The electronically nonadiabatic reaction of preassociation H + O + N 2 ↔ OH * + N 2 is the main channel of formation of electronically excited chemiluminescent…”
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  8. 8

    Analysis of the reaction and quenching channels in a H + O2(a1Δg) system by Sharipov, A S, Starik, A M

    Published in Physica scripta (01-11-2013)
    “…Comprehensive analysis based on quantum chemical calculations of potential energy surfaces of and systems has been carried out using the complete active space…”
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  9. 9

    Theoretical study of thermochemical properties of AlnCm clusters by Starik, A M, Sharipov, A S, Loukhovitski, B I, Savel'ev, A M

    Published in Physica scripta (01-01-2016)
    “…Both lower and higher heating values of small AlnCm clusters (n = 0...5, m = 0...5) were estimated via thermochemical analysis based on quantum chemical…”
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  10. 10

    Theoretical study of structure and physical properties of (Al2O3)n clusters by Sharipov, A S, Loukhovitski, B I, Starik, A M

    Published in Physica scripta (01-11-2013)
    “…The atomic structures, and thermochemical and physical properties, such as static isotropic polarizability, dipole moment, multiplicity and enthalpy of…”
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  11. 11

    On the Kinetic Mechanism of Ignition of Diborane Mixtures with Air by Savel’ev, A. M., Kuleshov, P. S., Lukhovitskii, B. I., Pelevkin, A. V., Savel’eva, V. A., Sharipov, A. S.

    Published in Combustion, explosion, and shock waves (01-06-2020)
    “…A reaction model is proposed for calculating the process of ignition of diborane mixtures with air. The model summarizes the previously developed kinetic…”
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  12. 12

    Syngas Oxidation Mechanism by Starik, A. M., Titova, N. S., Sharipov, A. S., Kozlov, V. E.

    Published in Combustion, explosion, and shock waves (01-09-2010)
    “…A comprehensive analysis of synthesis gas (syngas) oxidation kinetics in wide ranges of temperature, pressure, fuel-to-air equivalence ratio, and fuel…”
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  13. 13

    Intensification of shock-induced combustion by electric-discharge-excited oxygen molecules: numerical study by Starik, A. M., Loukhovitski, B. I., Sharipov, A. S., Titova, N. S.

    Published in Combustion theory and modelling (30-09-2010)
    “…Mechanisms of combustion enhancement in a supersonic H 2 -O 2 reactive flow behind an oblique shock wave front are investigated when vibrational and electronic…”
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  14. 14

    Evaluation of Prediction Ability of Detailed Reaction Mechanisms in the Combustion Performance in Hydrogen/Air Supersonic Flows by Bezgin, L. V., Kopchenov, V. I., Sharipov, A. S., Titova, N. S., Starik, A. M.

    Published in Combustion science and technology (02-01-2013)
    “…Comparative analysis of the prediction ability of several modern detailed kinetic models describing the ignition and combustion of hydrogen/air mixture in a…”
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  15. 15

    The Effect of the Vibrational Excitation of Molecules on the Shock-Induced Combustion in a Syngas-Air Mixture by Starik, A. M., Sharipov, A. S., Titova, N. S.

    Published in Combustion science and technology (01-01-2011)
    “…Mechanisms of combustion intensification in a syngas-air mixture supersonic flow behind the oblique shock wave front are investigated when the vibrations of…”
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    Kinetic mechanism of CO–H 2 system oxidation promoted by excited singlet oxygen molecules by Sharipov, A.S., Starik, A.M.

    Published in Combustion and flame (2012)
    “…The features of oxidation kinetics in CO–H 2O and CO–H 2 mixtures comprising singlet oxygen O 2( a 1Δ g ) and O 2( b 1 Σ g + ) molecules are considered. The…”
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    Enhancement of hydrogen sulfide oxidation via excitation of oxygen molecules to the singlet delta state by Starik, A.M., Savelieva, V.A., Sharipov, A.S., Titova, N.S.

    Published in Combustion and flame (01-08-2016)
    “…Comprehensive analysis of the effect of the presence of excited singlet oxygen molecules O2(a1Δg) on the enhancement of ignition and combustion in the H2S–air…”
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