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Mikhail Pugach
Mikhail Pugach
PhD, senior research scientist, Skoltech
在 skoltech.ru 的电子邮件经过验证
标题
引用次数
引用次数
年份
Zero dimensional dynamic model of vanadium redox flow battery cell incorporating all modes of vanadium ions crossover
M Pugach, M Kondratenko, S Briola, A Bischi
Applied energy 226, 560-569, 2018
982018
Output feedback control of electrolyte flow rate for Vanadium Redox Flow Batteries
M Pugach, S Parsegov, E Gryazina, A Bischi
Journal of Power Sources 455, 227916, 2020
532020
Energy efficiency analysis for a kilo-watt class vanadium redox flow battery system
M Pugach, V Vyshinsky, A Bischi
Applied Energy 253, 113533, 2019
462019
Dynamic modeling of vanadium redox flow batteries: Practical approaches, their applications and limitations
S Bogdanov, M Pugach, S Parsegov, V Vlasov, FM Ibanez, KJ Stevenson, ...
Journal of Energy Storage 57, 106191, 2023
192023
Numerical and experimental study of the flow-by cell for Vanadium Redox Batteries
M Pugach, M Kondratenko, S Briola, A Bischi
Energy Procedia 142, 3667-3674, 2017
172017
ESTIMATION OF THE EFFECT OF FREE-STREAM TURBULENCE AND SOLID PARTICLES ON THE LAMINAR− TURBULENT TRANSITION AT HYPERSONIC SPEEDS
MA Pugach, AA Ryzhov, AV Fedorov
TsAGI Science Journal 47 (1), 2016
132016
Prospect of modeling industrial scale flow batteries–From experimental data to accurate overpotential identification
AA Kurilovich, A Trovò, M Pugach, KJ Stevenson, M Guarnieri
Renewable and Sustainable Energy Reviews 167, 112559, 2022
122022
Analysis of flow factor control strategy in vanadium redox flow batteries
S Parsegov, M Pugach, A Polyakov, F Ibáñez
IFAC-PapersOnLine 55 (9), 187-192, 2022
92022
Comparison of calculated and experimental data on laminar-turbulent heat transfer on the hemisphere surface streamlined by a supersonic air flow
VV Gorskii, MA Pugach
High Temperature 53 (2), 223-227, 2015
82015
Parameter identification algorithm for dynamic modeling of industrial-scale vanadium redox flow batteries
S Bogdanov, S Parsegov, C Schubert, FM Ibanez, KH Pettinger, ...
Journal of Power Sources 580, 233423, 2023
72023
In situ state of health vanadium redox flow battery deterministic method in cycling operation for battery capacity monitoring
VI Vlasov, MA Pugach, DS Kopylova, AV Novikov, NA Gvozdik, ...
Journal of Power Sources 584, 233600, 2023
52023
Power management strategies for vanadium redox flow battery and supercapacitors in hybrid energy storage systems
MH Ali, D Slaifstein, FM Ibanez, C Zugschwert, M Pugach
2022 IEEE PES Innovative Smart Grid Technologies Conference Europe (ISGT …, 2022
52022
Optimal flow factor determination in vanadium redox flow battery control
A Morozov, S Parsegov, M Pugach, A Polyakov, P Osinenko, A Bolychev, ...
IEEE Access, 2024
22024
Optimal operation strategies of vanadium redox flow battery for residential peak shaving
S Bogdanov, S Parsegov, FM Ibanez, M Pugach, P Vorobev
2023 14th International Renewable Energy Congress (IREC), 1-6, 2023
12023
Critical assessment of the explicit methods for state of charge calculation in vanadium redox flow batteries
S Parsegov, M Pugach, V Erofeeva, F Ibáñez, V Terzija
2023 IEEE Belgrade PowerTech, 01-06, 2023
12023
Novel Engineering Method of Calculation of Heat Transfer in a Laminar-Turbulent Boundary Layer
VV Gorskii, MG Koval’skii, MA Pugach
Journal of Engineering Physics and Thermophysics 91 (5), 1313-1321, 2018
12018
Estimation of the gas blowing effect on convective heat transfer in laminar and turbulent boundary layers
VV Gorskii, MA Pugach
TsAGI Science Journal 47 (4), 2016
12016
Laminar-turbulent heat transfer on the surface of a hemisphere in hypersonic air flow
VV Gorskii, MA Pugach
TsAGI Science Journal 45 (8), 2014
12014
Identification of crossover flux in VRFB cells during battery cycling
M Pugach, S Bogdanov, V Vlasov, V Erofeeva, S Parsegov
Journal of Power Sources 610, 234745, 2024
2024
Modeling of Vanadium Redox Flow Battery Under Different Operating Temperatures
S Bogdanov, S Parsegov, FM Ibanez, M Pugach
2024 IEEE 7th International Electrical and Energy Conference (CIEEC), 5194-5199, 2024
2024
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