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Experimental Analysis of Nucleation Triggering in a Thermal Energy Storage Based on Xylitol Used in a Portable Solar Box Cooker

Coccia, Gianluca ; Aquilanti, Alessia ; Tomassetti, Sebastiano ; Muciaccia, Pio Francesco ; Di Nicola, Giovanni (2022):
Experimental Analysis of Nucleation Triggering in a Thermal Energy Storage Based on Xylitol Used in a Portable Solar Box Cooker. (Publisher's Version)
In: Energies, 14 (18), MDPI, e-ISSN 1996-1073,
DOI: 10.26083/tuprints-00019979,
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Item Type: Article
Origin: Secondary publication DeepGreen
Status: Publisher's Version
Title: Experimental Analysis of Nucleation Triggering in a Thermal Energy Storage Based on Xylitol Used in a Portable Solar Box Cooker
Language: English
Abstract:

Sugar alcohols have interesting thermodynamic properties that make them good options as heat storage materials (HSMs) to be used in solar cookers. Among sugar alcohols, xylitol is affected by severe supercooling that can significantly alter its usefulness in thermal energy storage (TES) systems. To overcome the supercooling issue, in this work the thermal behavior of a xylitol-based TES installed in a portable solar box cooker was investigated experimentally. The solar cooker has a 4.08 concentration ratio and the TES is a double-pot system filled with 2.5 kg of commercial-grade xylitol. The TES includes a manual mixing device that can be used to trigger the nucleation of xylitol. The effectiveness of the TES system with and without triggering was assessed through several outdoor tests, divided into heating and cooling phases, using silicone oil as absorbing media. It was found that the average load cooling time, in the temperature range of the test fluid from 110 to 80 °C, increased by about 346% when the solar cooker was equipped with the xylitol-triggered TES. The mixing device can therefore be considered an effective solution for regarding xylitol as an actual and performing phase change material.

Journal or Publication Title: Energies
Volume of the journal: 14
Issue Number: 18
Place of Publication: Darmstadt
Publisher: MDPI
Collation: 21 Seiten
Uncontrolled Keywords: sugar alcohol, supercooling, nucleation triggering, heating phase, cooling phase, thermal energy storage, phase change material
Classification DDC: 600 Technik, Medizin, angewandte Wissenschaften > 620 Ingenieurwissenschaften
Divisions: 13 Department of Civil and Environmental Engineering Sciences > Institute of Construction and Building Materials
Date Deposited: 02 May 2022 11:45
Last Modified: 06 Oct 2022 11:50
DOI: 10.26083/tuprints-00019979
Corresponding Links:
URN: urn:nbn:de:tuda-tuprints-199797
SWORD Depositor: Deep Green
URI: https://tuprints.ulb.tu-darmstadt.de/id/eprint/19979
PPN: 499849523
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