Detail publikačního výsledku

Sustainable air conditioning with a focus on evaporative cooling and the Maisotsenko cycle

POKORNÝ, J.; MADEJSKI, P.; FIŠER, J.

Originální název

Sustainable air conditioning with a focus on evaporative cooling and the Maisotsenko cycle

Anglický název

Sustainable air conditioning with a focus on evaporative cooling and the Maisotsenko cycle

Druh

Článek WoS

Originální abstrakt

Evaporative cooling can be an answer to the growing global demand for energy efficient and sustainable air conditioning. Direct evaporative cooling is the traditional method of cooling air to wet-bulb temperature. Indirect evaporative cooling uses heat exchangers with wet and dry channels to cool air indirectly, avoiding an increase in humidity. The Maisotsenko cycle is a dew point indirect evaporative cooling that allows air to be cooled below wet-bulb temperature using a heat and mass exchanger with a coupled wet and dry channel. It can be used as a stand-alone system, or as coupled with traditional refrigerantbased cooling systems, or as a heat recovery process to improve the efficiency in the power industry applications. A Pythonbased computational tool for simulating of 1D heat and mass transfer in the Maisotsenko cycle is presented here. It uses a spatially discretised differential equation solver and a psychrometric chart. The 1D model and experimental data from the study of Pakari were used as a reference for the initial testing. The comparison results are promising, suggesting a potential application in the design of sustainable cooling.

Anglický abstrakt

Evaporative cooling can be an answer to the growing global demand for energy efficient and sustainable air conditioning. Direct evaporative cooling is the traditional method of cooling air to wet-bulb temperature. Indirect evaporative cooling uses heat exchangers with wet and dry channels to cool air indirectly, avoiding an increase in humidity. The Maisotsenko cycle is a dew point indirect evaporative cooling that allows air to be cooled below wet-bulb temperature using a heat and mass exchanger with a coupled wet and dry channel. It can be used as a stand-alone system, or as coupled with traditional refrigerantbased cooling systems, or as a heat recovery process to improve the efficiency in the power industry applications. A Pythonbased computational tool for simulating of 1D heat and mass transfer in the Maisotsenko cycle is presented here. It uses a spatially discretised differential equation solver and a psychrometric chart. The 1D model and experimental data from the study of Pakari were used as a reference for the initial testing. The comparison results are promising, suggesting a potential application in the design of sustainable cooling.

Klíčová slova

Sustainability; Cooling; M-cycle; Python; 1D model

Klíčová slova v angličtině

Sustainability; Cooling; M-cycle; Python; 1D model

Autoři

POKORNÝ, J.; MADEJSKI, P.; FIŠER, J.

Vydáno

03.07.2025

Nakladatel

IMP PAN Publishers

Místo

Gdańsk, Poland

ISSN

2083-6023

Periodikum

Archives of Thermodynamics

Svazek

46

Číslo

2

Stát

Polská republika

Strany od

111

Strany do

121

Strany počet

11

URL

Plný text v Digitální knihovně

BibTex

@article{BUT198307,
  author="Jan {Pokorný} and Pawel {Madejski} and Jan {Fišer}",
  title="Sustainable air conditioning with a focus on evaporative cooling and the Maisotsenko cycle",
  journal="Archives of Thermodynamics",
  year="2025",
  volume="46",
  number="2",
  pages="111--121",
  doi="10.24425/ather.2025.154911",
  issn="1231-0956",
  url="https://journals.pan.pl/dlibra/publication/154911/edition/135792/content"
}

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