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Ivanov Petr Pavlovich

Publications in Math-Net.Ru

  1. Термодинамическая оптимизация гибридной схемы энергетической установки с твердооксидным топливным элементом с внутренней конверсией метана и c газовой турбиной

    TVT, Forthcoming paper
  2. Анализ механизмов воспламенения стехиометрической топливно-воздушной смеси

    TVT, Forthcoming paper
  3. Характеристики твердооксидного топливного элемента для термодинамического моделирования энергетических установок

    TVT, 61:5 (2023),  777–782
  4. Simulation of the metal hydride utilization cycle in a fuel cell with a high-temperature proton exchange membrane

    TVT, 61:1 (2023),  140–144
  5. Thermodynamic and physical simulation of a high-temperature proton-exchange membrane fuel cell

    TVT, 60:6 (2022),  933–937
  6. Hydrothermal oxidation of aluminum and metal hydride compression of hydrogen

    TVT, 60:5 (2022),  781–788
  7. Substantiation of technology for the growth of monocrystalline leucosapphire from technically pure corundum

    TVT, 59:2 (2021),  242–247
  8. Modeling of the electrochemical transformation of chemical energy of biofuel to electricity

    TVT, 58:2 (2020),  300–305
  9. Intensification of the removal of iron impurities from microporous aluminum oxide via argon blowing

    TVT, 58:1 (2020),  123–127
  10. Modeling of the evaporation of iron impurities from microporous aluminum oxide into vacuum

    TVT, 57:5 (2019),  786–789
  11. Peculiarities of thermophysical processes of “wet compression” in power units with highly atomized water injection and their influence on power units operation

    TVT, 57:4 (2019),  9–16
  12. Improvement of thermodynamic efficiency of the humid biofuel application in the distributed generation power suppliers

    TVT, 55:1 (2017),  76–80
  13. An ultrafast electric vehicle charging station as an object of decentralized power engineering

    TVT, 54:1 (2016),  114–119
  14. Certain Features of the Calculation of a Two-Phase Flow in the Droplet Regime

    TVT, 52:2 (2014),  326–329
  15. Thermodynamic efficiency of water use in a gas turbine cycle

    TVT, 51:4 (2013),  592–597
  16. On the calculated optimization of a gasifier

    TVT, 50:6 (2012),  835–840
  17. Thermodynamic Modeling of Power Plants Based on Solid Oxide Fuel Cells

    TVT, 49:4 (2011),  627–633
  18. Gas-dynamic and electrical characteristics of MHD generator according to data from physical and numerical experiments – RM channel of the U-25 device

    TVT, 21:3 (1983),  567–576
  19. Numerical-simulation of the operation of a MHD generator in transient regimes in MHD power-stations

    TVT, 20:2 (1982),  347–358
  20. Исследование оптимальных характеристик МГД-генератора для комбинированных МГДЭС открытого цикла

    TVT, 13:2 (1975),  407–412
  21. К выбору параметров пиковой МГД-установки

    TVT, 10:5 (1972),  1097–1101
  22. К определению времени установления неравновесного состояния на входе в канал МГД-генератора

    TVT, 5:3 (1967),  418–422
  23. Некоторые особенности работы МГД-генератора при больших числах Холла

    TVT, 3:6 (1965),  845–850
  24. К вопросу оптимизации течения неравновесной плазмы в канале МГД-генератора

    TVT, 3:4 (1965),  562–568


© Steklov Math. Inst. of RAS, 2024