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Tomasz Janda
Tomasz Janda
Kierownik Projektu, PGE Energia Ciepła S.A.
Verified email at gkpge.pl
Title
Cited by
Cited by
Year
A validation of computational fluid dynamics temperature distribution prediction in a pulverized coal boiler with acoustic temperature measurement
N Modliński, P Madejski, T Janda, K Szczepanek, W Kordylewski
Energy 92, 77-86, 2015
692015
Optimization of combustion process in coal-fired power plant with utilization of acoustic system for in-furnace temperature measurement
Ł Śladewski, K Wojdan, K Świrski, T Janda, D Nabagło, J Chachuła
Applied Thermal Engineering 123, 711-720, 2017
292017
Optimisation of coal fineness in pulverised-fuel boilers
M Pronobis, K Mroczek, M Tymoszuk, S Ciukaj, R Wejkowski, T Janda, ...
Energy 139, 655-666, 2017
232017
A combustion process optimization and numerical analysis for the low emission operation of pulverized coal-fired boiler
P Madejski, T Janda, N Modlinski, D Nabaglo
Developments in Combustion Technology, 33-76, 2016
172016
Analysis of fouling degree of individual heating surfaces in a pulverized coal fired boiler
P Madejski, T Janda, J Taler, D Nabagło, R Węzik, M Mazur
Journal of Energy Resources Technology 140 (3), 032003, 2018
142018
Chemical and thermal methods for removing ammonia from fly ashes
M Mazur, T Janda, W Żukowski
Technical transactions 114 (6), 31-50, 2017
132017
Determination of high temperature corrosion rates of steam boiler evaporators using continuous measurements of flue gas composition and neural networks
T Hardy, S Kakietek, K Halawa, K Mościcki, T Janda
Energies 13 (12), 3134, 2020
82020
Online monitoring system of air distribution in pulverized coal-fired boiler based on numerical modeling
P Żymełka, D Nabagło, T Janda, P Madejski
Archives of Thermodynamics 38 (4), 109–-125, 2017
72017
The control of high temperature corrosion phenomenon in boundary layer using different measurement methods
R Wejkowski, S Kalisz, T Hardy, B Sarapata, H Kubiczek, T Janda
Taller, J., Ed, 2013
62013
Modelowanie numeryczne wprowadzanych zaburzeń w przepływie spalin w piecu przepychowym w celu zwiększenia wydajności
M Górska, L Szecówka, T Janda
XIV International Scientific Conference, Iron and Steelmaking, Mala Lucivna, 2004
62004
Improving the accuracy of electricity and heat production forecasting in a supervision computer system of a selected gas-fired CHP plant operation
M Szega, P Żymełka, T Janda
Energy 239, 122464, 2022
42022
Combustion process optimization by using immune optimizer in power boiler
Ł Śladewski, D Nabagło, T Janda, J Chachuła
Archivum Combustionis 35 (1), 2015
42015
Mathematical procedure for predicting tube metal temperature in the radiant superheaters of a tangentially and front fired utility boilers
N Modliński, T Janda
Thermal Science and Engineering Progress 40, 101763, 2023
32023
A tool for on-line control of high-temperature corrosion hazard in steam boilers
T Hardy, S Kakietek, T Janda
Archivum Combustionis 37, 2017
32017
Combustion process optimization by using immune optimizer in power boiler
D Nabagło, T Janda, J Chachuła
Archivum Combustionis 35 (1), 51--63, 2015
12015
The use of optical flame scanners for combustion process analysis in OP-650 power boiler
D Nabagło, P Podgórski, T Janda, P Sokołowski
Arch. Combust. 35 (2), 2015
12015
Kontrola procesu spalania z wykorzystaniem zaawansowanych systemów monitoringu
S Kalisz, M Pronobis, P Ostrowski, K Mroczek, R Wejkowski, T Janda
12014
Combustion process analysis using the flame scanners in front-fired pulverized coal boiler
D Nabagało, T Kurek, K Wojdan, T Janda
4 th International Conference on Contemporary Problems of Thermal …, 2016
2016
Thermo-flow and strength monitoring of a PC boiler
J Taler, B Węglowski, D Taler, M Trojan, T Sobota, P Dzierwa, M Pilarczyk, ...
2014
Modernizacja pieca pokrocznego do opuszczania rur stalowych po hartowaniu
J Boryca, T Daniel, T Janda, I Krężołek, H Radomiak, L Szecówka
Hutnik, Wiadomości Hutnicze 67 (8-9), 356-359, 2000
2000
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