Eva Zavrl (Author), Urban Tomc (Author), Mohamed El Mankibi (Author), Mateja Dovjak (Author), Uroš Stritih (Author)

Abstract

The present study introduces an active-passive system (APS) with phase change material (PCM) integrated into the substructure of the internal walls and ceiling for cooling. To ensure sufficient cooling effect of the system during the daytime cycle, the system must solidify completely during the nighttime cycle and operation costs comparable to the ones of conventional cooling systems. An air gap was formed between the primary wall and ceiling and the PCM substructure and ventilated with the cool outdoor air during the nighttime cycle. A parametric study was performed using ANSYS Fluent followed by the energy performance and operation cost analysis. Different inlet air temperature scenarios (15-20°C) were tested (suitable PCM thermal characteristics). The required solidification-time of PCM was determined. The model is validated against the experimental tests. The results show that with the current configuration, the PCM plates can be sufficiently solidified at supply air temperatures of 17°C and below. If the system is ventilated with inlet air temperatures above 17°C, additional cooling options must be considered. The study also determines the energy performance of the system under the chosen conditions and compares its feasibility to the conventional cooling systems (energy efficiency class A+++ and G air-conditioning device).

Keywords

nočno prezračevanje;fazno spremenljivi materiali;zalogovnik toplote;prezračevana zračna rega;PCM integrirani v stavbne elemente;računalniška dinamika tekočin;night ventilation;phase change material;thermal energy storage;ventilated air gap;PCM integrated building elements;computational fluid dynamics;

Data

Language: English
Year of publishing:
Typology: 1.01 - Original Scientific Article
Organization: UL FS - Faculty of Mechanical Engineering
UDC: 697:621.5
COBISS: 166103555 Link will open in a new window
ISSN: 2210-6715
Views: 119
Downloads: 20
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Other data

Secondary language: Slovenian
Secondary keywords: nočno prezračevanje;fazno spremenljivi materiali;zalogovnik toplote;prezračevana zračna reža;PCM integrirani v stavbne elemente;računalniška dinamika tekočin;
Type (COBISS): Article
Pages: str. 1-18
Issue: ǂVol. ǂ99
Chronology: Dec. 2023
DOI: 10.1016/j.scs.2023.104960
ID: 21493020