Szczegóły publikacji

Opis bibliograficzny

Conceptual design of experimental test rig for research on thermo-flow processes during direct contact condensation in the two-phase spray-ejector condenser / Paweł J. MADEJSKI, Michał KARCH, Piotr MICHALAK, Krzysztof Banasiak // W: CPOTE 2022 [Dokument elektroniczny] : 7th international conference on Contemporary Problems of Thermal Engineering : towards sustainable & decarbonized energy system : Warsaw, Poland, 20-23 September 2022 : conference proceedings / eds. Wojciech Stanek, [et al.]. — Wersja do Windows. — Dane tekstowe. — [Gliwice] : Department of Thermal Technology, 2022. — e-ISBN: 978-83-61506-55-3. — S. 909-920. — Wymagania systemowe: Adobe Reader. — Tryb dostępu: https://www.s-conferences.eu/ftp/cpote/CPOTE_proceedings_19_1... [2022-10-21]. — Bibliogr. s. 919-920, Abstr.

Autorzy (4)

Słowa kluczowe

design of experimentsteam condensationtwo phase ejectoroxy combustion CO2 capturedirect contact condensation

Dane bibliometryczne

ID BaDAP143229
Data dodania do BaDAP2022-11-07
Rok publikacji2022
Typ publikacjimateriały konferencyjne (aut.)
Otwarty dostęptak
WydawcaUniwersytet Śląski w Katowicach

Abstract

The Carbon Capture Utilization and Storage (CCUS) technologies reduce greenhouse gas emissions, and one specific approach is combining CCUS with oxy-combustion power generation units. Oxygen is used for the combustion process instead of air, mainly to eliminate the nitrogen content in the flue gas, and it allows generating flue gas with carbon dioxide and water vapor as the major contents. The paper presents the conceptual design of a prototype experimental facility for mixing jet-type flow condensers investigations when the steam in exhaust gases is condensed on the water jet in the presence of CO2. The proposed experimental test rig was designed to give abilities to investigate the effectiveness of jet condensers experimentally as part of the CO2 capture phase and especially to investigate Spray-Ejector Condensers (SEC) developed as the combination of ejector and condenser devices. The paper presents the design and key features of the prototype installation components. The basic design was developed based on the simulation results, and for this purpose model of installation, including characteristics of individual components, was built. The developed model helps to evaluate the main performances of the conceptual test rig and supports the test-rig design process. The main components and the features of the steam generation unit, CO2 supply and mixing with steam, process water preparation, and H2O and CO2 separation subsystem are discussed. The measuring system was designed to test the efficiency of compression and condensation processes of the SEC fed by the CO2/H20 gas mixture.

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#143223Data dodania: 4.11.2022
CFD modeling of the multiphase flow with condensation in the two-phase ejector condenser / Tomasz KUŚ, Paweł MADEJSKI // W: CPOTE 2022 [Dokument elektroniczny] : 7th international conference on Contemporary Problems of Thermal Engineering : towards sustainable & decarbonized energy system : Warsaw, Poland, 20-23 September 2022 : conference proceedings / eds. Wojciech Stanek, [et al.]. — Wersja do Windows. — Dane tekstowe. — [Gliwice] : Department of Thermal Technology, 2022. — e-ISBN: 978-83-61506-55-3. — S. 833-844. — Wymagania systemowe: Adobe Reader. — Tryb dostępu: https://www.s-conferences.eu/ftp/cpote/CPOTE_proceedings_19_1... [2022-10-21]. — Bibliogr. s. 843-844, Abstr.
fragment książki
#143228Data dodania: 7.11.2022
Development of a spray-ejector condenser for the use in a negative $CO_{2}$ emission gas power plant / Paweł MADEJSKI, Krzysztof Banasiak, Paweł Ziółkowski, Dariusz Mikielewicz, Jarosław Mikielewicz, Tomasz KUŚ, Michał KARCH, Piotr MICHALAK, Milad Amiri, Paweł Dąbrowski, Kamil Stasiak, Navaneethan SUBRAMANIAN, Tomasz Ochrymiuk // W: CPOTE 2022 [Dokument elektroniczny] : 7th international conference on Contemporary Problems of Thermal Engineering : towards sustainable & decarbonized energy system : Warsaw, Poland, 20-23 September 2022 : conference proceedings / eds. Wojciech Stanek, [et al.]. — Wersja do Windows. — Dane tekstowe. — [Gliwice] : Department of Thermal Technology, 2022. — e-ISBN: 978-83-61506-55-3. — S. 897-907. — Wymagania systemowe: Adobe Reader. — Tryb dostępu: https://www.s-conferences.eu/ftp/cpote/CPOTE_proceedings_19_1... [2022-10-21]. — Bibliogr. s. 906-907, Abstr.