Zobrazeno 1 - 10
of 14
pro vyhledávání: '"Tomasz Bury"'
Publikováno v:
Heat Transfer Engineering. 44:912-925
Autor:
M. Hanuszkiewicz-Drapała, Tomasz Bury
Publikováno v:
Heat Transfer Engineering. 42:191-204
The work deals with a thermodynamic analysis of finned liquid-gas cross-flow heat exchangers. Analyzing such devices, it is important to determine the heat transfer coefficients on the liquid and t...
Publikováno v:
Heat Transfer Engineering. 39:1179-1191
The work deals with thermal and hydraulic modeling of fin-and-tube cross-flow heat exchangers with a non-uniform flow of media. A maldistribution of media flow is not considered in the standard the...
Autor:
B. Słomak-Słupik, Tomasz Bury
Publikováno v:
OCHRONA PRZED KOROZJĄ. 1:31-35
Autor:
Tomasz Bury, M. Hanuszkiewicz-Drapała
Publikováno v:
E3S Web of Conferences, Vol 323, p 00005 (2021)
The paper presents results of numerical and experimental analyses of a fin-and-tube air-water heat exchanger. The analysed device is a one-row heat exchanger with finned elliptical tubes. The aim of the analyses is to investigate the impact of a cont
Publikováno v:
Archives of Thermodynamics, Vol 37, Iss 1, Pp 99-112 (2016)
A cross-flow, tube and fin heat exchanger of the water – air type is the subject of the analysis. The analysis had experimental and computational form and was aimed for evaluation of radiative heat transfer impact on the heat exchanger performance.
Autor:
Tomasz Bury, M. Hanuszkiewicz-Drapała
Publikováno v:
Archives of Thermodynamics, Vol 37, Iss 1, Pp 47-72 (2016)
This paper presents the results of thermodynamic analyses of a system using a horizontal ground heat exchanger to cool a residential building in summer and heat it in the autumn-winter period. The main heating device is a vapour compression heat pump
Autor:
Tomasz Bury
Publikováno v:
Nukleonika, Vol 60, Iss 2, Pp 339-345 (2015)
The problem of hydrogen behavior in containment buildings of nuclear reactors belongs to thermal-hydraulic area. Taking into account the size of systems under consideration and, first of all, safety issues, such type of analyses cannot be done by mea
Publikováno v:
Nukleonika, Vol 60, Iss 2, Pp 347-353 (2015)
This study deals with numerical modeling of passive autocatalytic hydrogen recombiners (PARs). Such devices are installed within containments of many nuclear reactors in order to remove hydrogen and convert it to steam. The main purpose of this work
Publikováno v:
Archives of Thermodynamics. 34:257-266
Passive autocatalytic recombiners (PAR) is the only used method for hydrogen removal from the containment buildings in modern nuclear reactors. Numerical models of such devices, based on the CFD approach, are the subject of this paper. The models may