Flexible Thermoelectric Active Cooling Garment to Combat Extreme Heat

Fuente: arXiv
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Main Authors: Feng, Tianshi, Wang, Jiedong, Sun, Ethan, Di Buono, Antonio, Chen, Renkun
Format: Preprint
Published: 2024
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author Feng, Tianshi
Wang, Jiedong
Sun, Ethan
Di Buono, Antonio
Chen, Renkun
author_facet Feng, Tianshi
Wang, Jiedong
Sun, Ethan
Di Buono, Antonio
Chen, Renkun
contents With the increasing frequency, intensity, and duration of extreme heat events due to climate change, heat-related diseases or even mortality have become more prevalent. An efficient personal cooling strategy can mitigate heat stress by regulating the skin temperature within the thermal comfort zone. However, lightweight, wearable, and sustainable cooling garments are unavailable today. Here, we developed a TED-based cooling garment and demonstrated its effectiveness in active personal cooling. The garment is shown to maintain the skin temperature within its thermal comfort zone in a hot environment of up to 40 oC under mild forced convection conditions (air flow speed of 2.2 m s-1). Furthermore, we demonstrated a portable cooling system with less than 700 grams of total weight, which includes the TED-based garment, a battery pack, and a temperature controller. The system showed long-term cooling on the skin with varying ambient temperatures from 35 to 40 oC. With the advantages of lightweight, flexible, controllable and long-term effective cooling, the TED cooling garments described in this work can contribute to enhanced health and comfort in an increasingly hotter climate.
format Preprint
id arxiv_https___arxiv_org_abs_2411_08349
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Flexible Thermoelectric Active Cooling Garment to Combat Extreme Heat
Feng, Tianshi
Wang, Jiedong
Sun, Ethan
Di Buono, Antonio
Chen, Renkun
Applied Physics
With the increasing frequency, intensity, and duration of extreme heat events due to climate change, heat-related diseases or even mortality have become more prevalent. An efficient personal cooling strategy can mitigate heat stress by regulating the skin temperature within the thermal comfort zone. However, lightweight, wearable, and sustainable cooling garments are unavailable today. Here, we developed a TED-based cooling garment and demonstrated its effectiveness in active personal cooling. The garment is shown to maintain the skin temperature within its thermal comfort zone in a hot environment of up to 40 oC under mild forced convection conditions (air flow speed of 2.2 m s-1). Furthermore, we demonstrated a portable cooling system with less than 700 grams of total weight, which includes the TED-based garment, a battery pack, and a temperature controller. The system showed long-term cooling on the skin with varying ambient temperatures from 35 to 40 oC. With the advantages of lightweight, flexible, controllable and long-term effective cooling, the TED cooling garments described in this work can contribute to enhanced health and comfort in an increasingly hotter climate.
title Flexible Thermoelectric Active Cooling Garment to Combat Extreme Heat
topic Applied Physics
url https://arxiv.org/abs/2411.08349