Search Results - "Snezhkin, Yu. F."

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  1. 1

    Use of Combined Cogeneration–Thermal Pumping Plants for Municipal Heat Power Engineering and Heat Technologies by Snezhkin, Yu. F., Bileka, B. D.

    “…A procedure is suggested for determining the relative integral fuel economy of heat power engineering plants based on the equations of balances of their…”
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    Journal Article
  2. 2

    Investigation of the State of Water in Energy Trees in the Process of Drying by Differential Scanning Calorimetry by Mykhailyk, V. A., Snezhkin, Yu. F., Dmitrenko, N. V.

    “…This paper presents the results of investigation of the state of water in young sprouts of energy trees (willow, poplar, and alder) in the process of drying to…”
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  3. 3

    Change in the Specific Heat Capacity of Parenchymal Tissues of Apples due to Dehydration by Mikhailik, V. A., Dmitrenko, N. V., Snezhkin, Yu. F.

    “…We present the results of measurements of the heat capacity of parenchymal tissues of apples by the differential scanning calorimetry method. An analytical…”
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  4. 4

    Development of the theory and methods for calculating the dynamics of sorption and desorption by Nikitenko, N. I., Snezhkin, Yu. F., Sorokovaya, N. N.

    “…A system of equations of heat and mass transfer, phase transformations, and deformation of porous bodies in sorption and desorption are derived and…”
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  5. 5

    Theoretical and Experimental Studies of Convective Dehydration of Spicy-Aromatic Raw Materials by Snezhkin, Yu. F., Shapar’, R. A., Gusarova, E. V.

    “…Various methods of drying spicy-aromatic raw materials are described. The kinetic laws governing the process of convective drying of the ginger and galangal…”
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  6. 6

    Investigation of the Influence of Hydration on the Heat of Evaporation of Water From Sucrose Solutions by Mikhailik, V. A., Dmitrenko, N. V., Snezhkin, Yu. F.

    “…An analysis has been made of the literature data on sucrose hydration. A platform of the most reliable experimental data has been selected. In a differential…”
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  7. 7

    Simulation of the High-Temperature Drying of a Composite Mixture in an Air Drier for Production of a Biocombustible by Korinchuk, D. N., Snezhkin, Yu. F.

    “…A mathematical model is proposed for defining the high-temperature drying of a composite mixture comprising a peat and a vegetable biomass in an air drier with…”
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  8. 8

    Mathematical Simulation and Optimization of the Continuous Drying of Thermolabile Materials by Sorokovaya, N. N., Snezhkin, Yu. F., Shapar’, R. A., Sorokovoi, R. Ya

    “…A mathematical model of the heat and mass transfer and the phase transformations in colloidal capillary-porous materials and a numerical method for calculating…”
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  9. 9

    Development of a theory and methods for calculating the heat and mass transfer in drying a porous body with multicomponent vapor and liquid phases by Nikitenko, N. I., Snezhkin, Yu. F., Sorokovaya, N. N.

    “…Theoretical fundamentals and a numerical method for calculating the heat and mass transfer and phase transformations in drying porous bodies with…”
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  10. 10

    Mathematical simulation of heat and mass transfer, phase conversions, and shrinkage for optimization of the process of drying of thermolabile materials by Nikitenko, N I, Snezhkin, Yu F, Sorokovaya, N N

    “…A mathematical model and a numerical method for calculation of the processes of heat and mass transfer, phase conversions, and shrinkage in drying of colloidal…”
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  11. 11

    Numerical method of simulation of the heat and mass transfer in different flows in a channel with penetrable walls by Nikitenko, N I, Snezhkin, Yu F, Sorokovaya, N N, Kol'chik, Yu N

    “…A mathematical model and a numerical method for calculating the dynamics of a fluid and the heat and mass transfer in it in a channel with penetrable walls are…”
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  12. 12

    Thermal Analysis of Combustible Components of Municipal Solid Waste by Snezhkin, Yury, Mykhailyk, Viacheslav, Korinchevska, Tetiana

    Published in Problems of the regional energetics (01-04-2024)
    “…The use of municipal solid waste as a raw material for alternative fuel is a promising direction for waste recycling and substitution of solid fossil fuels…”
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