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2020 | OriginalPaper | Buchkapitel

Application of Thermosiphon Solar Collectors for Ventilation of Premises

verfasst von : M. Ulewicz, V. Zhelykh, Kh. Kozak, Y. Furdas

Erschienen in: Proceedings of CEE 2019

Verlag: Springer International Publishing

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Abstract

The article deals with an analysis of the popular existing solar heating systems and the main directions of modern research on air heating solar collectors. The analysis has made it possible to outline the purpose of the research, namely, to study the nature of the distribution, as well as the rate of distribution of heated air mass in the room heated by the presented solar air heater with turbulators flow. Based on computer simulation and experimental research, it has been found that a thermosiphon air solar collector is capable of providing certain comfortable indoor climate parameters for a person, namely temperature and air flow velocity. In addition, the air solar heating system with a phase-change battery has been presented. The main difference of this system is the availability of the heat-accumulating coating installed in the air channel in the form of a matrix with segments filled with saturated solution of Glauber salt.

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Literatur
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Zurück zum Zitat Zhelykh V, Kozak Ch, Savchenko O (2016) Using of thermosiphon solar collector in an air heating system of passive house. Pollack Period 11(2):125–133CrossRef Zhelykh V, Kozak Ch, Savchenko O (2016) Using of thermosiphon solar collector in an air heating system of passive house. Pollack Period 11(2):125–133CrossRef
Zurück zum Zitat Zhelykh V, Kozak Kh, Dzeryn O, Pashkevych V (2018) Physical modeling of thermal processes of the air solar collector with flow turbulators. JEECS 4(1):9–16 Zhelykh V, Kozak Kh, Dzeryn O, Pashkevych V (2018) Physical modeling of thermal processes of the air solar collector with flow turbulators. JEECS 4(1):9–16
Metadaten
Titel
Application of Thermosiphon Solar Collectors for Ventilation of Premises
verfasst von
M. Ulewicz
V. Zhelykh
Kh. Kozak
Y. Furdas
Copyright-Jahr
2020
DOI
https://doi.org/10.1007/978-3-030-27011-7_23