Wykaz publikacji wybranego autora

Tomasz A. Prokop, dr inż.

adiunkt

Wydział Energetyki i Paliw
WEiP-kppe, Katedra Podstawowych Problemów Energetyki


  • 2020

    [dyscyplina 1] dziedzina nauk inżynieryjno-technicznych / inżynieria środowiska, górnictwo i energetyka


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0003-1898-571X orcid iD

ResearcherID: S-4323-2018

Scopus: 57201796824

PBN: 5e7093e5878c28a0473b2d25

OPI Nauka Polska

System Informacyjny AGH (SkOs)





Liczba pozycji spełniających powyższe kryteria selekcji: 24, z ogólnej liczby 24 publikacji Autora


1
  • A parametric analysis of concentration losses in an anode of a solid oxide fuel cell
2
  • A parametric analysis of concentration losses in an anode of a Solid Oxide Fuel Cell
3
  • A parametric analysis of microscale transport phenomena in an SOFC anode
4
  • A parametric analysis of thermodynamic losses in an anode of a solid oxide fuel cell
5
  • A three-dimensional analysis of localized transport phenomena in SOFC anode
6
7
  • A three-dimensional microstructure-scale simulation of a solid oxide fuel cell anode – the analysis of stack performance enhancement after a long-term operation
8
  • A three-dimensional numerical analysis of charge transport phenomena in a solid oxide fuel cell anode – the impact of a long-term operation
9
  • A three-dimensional numerical assessment of heterogeneity impact on a solid oxide fuel cell’s anode performance
10
  • Comparison of $Ga^+$ FIB and plasma FIB systems used for microstructural characterization of a solid oxide fuel cell (SOFC) electrode
11
  • Developing micro-scale heterogeneous numerical simulation of a solid oxide fuel cell anode
12
  • Developing micro-scale heterogeneous numerical simulation of a solid oxide fuel cell anode
13
  • Developing multi-scale heterogeneous numerical model to address the problem of microstructure degradation in SOFC
14
  • Estimation of microstructural free energy decay in a Solid Oxide Cell stack after a long term performance experiment
15
  • From micro to macroscale: multiscale aspects of solid oxide fuel cell stack simulations
16
17
  • Large-volume three-dimensional tomography of a solid oxide fuel cell
18
  • Large-volume three-dimensional tomography of a solid oxide fuel cell electrode by Xe plasma FIB (PFIB)
19
  • Microstructure evolution in a solid oxide fuel cell stack quantified with interfacial free energy
20
21
  • Tailoring SOFC electrodes' microstructure using 3D representative volume element generation and evolutionary computing
22
  • Thin solid film electrolyte and its impact on electrode polarization in Solid Oxide Fuel Cells studied by three-dimensional microstructure-scale numerical simulation
23
  • Three-dimensional digital reconstruction of nickel cermet microstructure of solid oxide fuel cell anode using FIB-SEM tomography
24
  • Towards a Solid Oxide Fuel Cell microstructure evolution model calibrated using long-term performance experiment data