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Wyszukujesz frazę "flow mechanics" wg kryterium: Temat


Wyświetlanie 1-3 z 3
Tytuł:
A thermodynamic analysis of a gas-steam turbine incorporating a full model of a spray – ejector condense
Autorzy:
Ziółkowski, P.
Powiązania:
https://bibliotekanauki.pl/articles/175324.pdf
Data publikacji:
2018
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
computational flow mechanics modelling
two-phase ejector
thermodynamic analysis
numerical analysis
Opis:
The specific issues that occur in the mathematical modelling of a spray-ejector condenser have been presented. The results of a thermodynamic analysis of a steam-gas turbine cycle have been obtained by computational flow mechanics code. The main aim of the spray-ejector condenser is simultaneously condensing steam and compressing CO2 from the condensation pressure to about 100 kPa. Hence, the most important innovation of this steam-gas cycle emerges as the enhanced condensation, which is based on the nano-injection of cold water and a jet-powered compression of CO2 performed in the spray-ejector condenser.
Źródło:
Transactions of the Institute of Fluid-Flow Machinery; 2018, 139; 63-96
0079-3205
Pojawia się w:
Transactions of the Institute of Fluid-Flow Machinery
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Accuracy problem of modeling in a gas turbine cycle with heat regeneration according to Szewalski’s idea
Autorzy:
Ziółkowski, P.
Piotrowski, R.
Badur, J.
Powiązania:
https://bibliotekanauki.pl/articles/175258.pdf
Data publikacji:
2015
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
heat regeneration
gas turbine
thermodynamical analysis
numerical analysis
basic model vs numerical model
computational flow mechanics (CMF)
Opis:
In this paper, authors undertook a problem of accuracy and exactness verification of some assumptions and calculation methods that are important in the 0D modeling. The computational flow mechanics (CFM) tools and basic calculations of gas turbine cycle with heat regeneration according to Szewalski’s idea have been done. Results and conclusions for this specific problem have been presented. Gas turbine cycle with heat regeneration according to Szewalski’s idea includes regeneration as same as it is now commonly employed in steam turbine cycles. Mentioned regeneration is enabled by adding to the simple cycle devices configuration of two regenerative heat exchangers and auxiliary compressor. That modification allows to obtain working medium circulation in closed cycle inside a basic cycle. Efficiency gain is dependent on extraction pressure and extraction mass flow rate.
Źródło:
Transactions of the Institute of Fluid-Flow Machinery; 2015, 129; 77-109
0079-3205
Pojawia się w:
Transactions of the Institute of Fluid-Flow Machinery
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Revalorization of the Szewalski binary vapour cycle
Autorzy:
Ziółkowski, P.
Hernet, J.
Badur, J.
Powiązania:
https://bibliotekanauki.pl/articles/240007.pdf
Data publikacji:
2014
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
binary cycle
binary plant
ORC
thermodynamical analysis
numerical analysis
computational flow mechanics
cykl binarny
analiza termodynamiczna
analiza numeryczna
mechanika przepływu
Opis:
The aim of the paper is to revalorizate of the Szewalski binary vapour cycle by analysing thermodynamical and operational parameters of this cycle. This was carried out by accessible numerical computational flow mechanics codes using the step-by-step modeling of separate elements. The binary vapour cycle is providing steam as the working fluid in the high temperature part of the cycle, while another fluid - a low boiling point fluid of low specific volume - as the working substance substituting conventional steam over the temperature range represented by the low pressure steam expansion. The steam cycle for reference conditions has been assumed. Four working fluids in the low temperature part of the binary cycle such as propane, isobutane, ethanol and ammonia have been investigated.
Źródło:
Archives of Thermodynamics; 2014, 35, 3; 225-249
1231-0956
2083-6023
Pojawia się w:
Archives of Thermodynamics
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-3 z 3

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