Szczegóły publikacji

Opis bibliograficzny

The numerical comparison of heat transfer in a coated and fixed bed of an adsorption chiller / Grabowska Karolina, Sosnowski Marcin, Krzywanski Jaroslaw, SZTEKLER Karol, KALAWA Wojciech, Zylka Anna, NOWAK Wojciech // Journal of Thermal Science ; ISSN 1003-2169. — 2018 — vol. 27 no. 5 spec. iss. on Computational heat and mass transfer, s. 421–426. — Bibliogr. s. 425–426, Abstr. — Publikacja dostępna online od: 2018-08-28

Autorzy (7)

Słowa kluczowe

silica gelcoated adsorption bedthermal conductivitycomputational fluid dynamicslow grade thermal energy sourcesadsorption chiller

Dane bibliometryczne

ID BaDAP130618
Data dodania do BaDAP2020-10-12
Tekst źródłowyURL
DOI10.1007/s11630-018-1035-y
Rok publikacji2018
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Czasopismo/seriaJournal of Thermal Science

Abstract

Ecological adsorption technology is becoming a focus of attention by industry due to the utilization of low grade thermal energy sources for cooling production. It can be a promising part of sustainable development concept of the global economy. Therefore, research aiming at improving their performance i.e. Coefficient of Performance (COP) by optimizing the construction of sorption beds with a built in heat exchanger system is crucial. The heat transfer characteristics between the bed of porous media (sorbent) and surface of the heat exchanger system determine the heating power of an adsorption chiller. The HP increase can be obtained by heat transfer intensification due to the increase in the thermal conductivity of the sorbent layer in the vicinity of the heat exchanger's surface. The novel modification of the sorbent layer structure is proposed in the paper in order to improve the heat transfer processes in the heat exchanger boundary layer. The analysis of desorption process conditions in the parametric model of a coated and fixed adsorption bed design is presented in the paper. The computational fluid dynamics (CFD) with conjugate heat transfer analysis is used to determine the crucial input parameters (temperature distribution in the sorbent bed) for further analytical calculations. The commercial code Ansys Fluent was used to perform numerical simulations. The developed computational model consisted of three subdomains representing heating water, heat exchanger material (copper) and sorbent (silica gel). The comparison of a novel coated design and a conventional fixed bed is discussed in the paper. The numerical analysis is based on experimental thermal conductivity measurements of the sorbent layer in different configurations, which were performed using Laser Flash Method.

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artykuł
#131176Data dodania: 30.11.2020
Construction of an innovative adsorbent bed configuration in the adsorption chiller. Pt. 2, Experimental research of coated bed samples / K. Grabowska, K. SZTEKLER, J. Krzywanski, M. Sosnowski, S. STEFAŃSKI, W. NOWAK // Energy ; ISSN 0360-5442. — 2021 — vol. 215 art. no. 119123, s. 1-9. — Bibliogr. s. 8-9, Abstr. — Publikacja dostępna online od: 2020-10-24
artykuł
#121125Data dodania: 18.4.2019
Fuzzy logic approach in the analysis of heat transfer in a porous sorbent bed of the adsorption chiller / Karolina Grabowska, Jarosław Krzywański, Karol SZTEKLER, Wojciech KALAWA, Wojciech NOWAK // Technical Sciences ; ISSN 1505-4675. — 2018 — no. 21(4), s. 281–290. — Bibliogr. s. 289–290, Abstr. — Publikacja dostępna online od: 2018-11-21