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热电冷却系统在制作冷却带中的应用:以热应激控制措施装置为例。

Application of the thermoelectric cooling system in making a cooling belt: A case of heat stress control measure device.

机构信息

Environmental Technologies Research Center, Medical Basic Sciences Research Institute, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.

Department of Occupational Health, School of Health, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.

出版信息

Work. 2024;78(3):797-805. doi: 10.3233/WOR-230329.

Abstract

BACKGROUND

Climate change and global warming are emerging as new challenges worldwide. The World Meteorological Organization has reported that the temperature is expected to rise by an average of 1.2°C between 2021-2025. This increase in temperature will expose more and more workers to extreme heat.

OBJECTIVE

This study aimed to explore the possibility of using thermoelectric coolers for cooling the water circulation circuit of a cooling belt, which can be used for extended periods in high-temperature environments.

METHODS

A cooling belt was designed using thermoelectric coolers (TEC) and two blowers. The TECs were equipped with heat sinks and heat exchange block made of aluminum at hot and cold sides to exchange heat effectively.

RESULTS

The experiment was conducted under actual environmental temperature conditions during three different time periods, with mean temperatures of 31, 48, and 41°C. The mean temperature of the belt section was recorded as 20.73, 24.52, and 21.38°C, respectively. The maximum average difference between the inlet air temperature and the inside cooling belt temperature was 40.45°C.

CONCLUSION

The experiment revealed that the cooling performance of the designed prototype remained within an acceptable range (18°C) despite the increase in ambient temperature. Moreover, the cooling system can be utilized in high-heat environments to reduce thermal stress.

摘要

背景

气候变化和全球变暖正在成为全球新的挑战。世界气象组织报告称,2021-2025 年间,全球平均气温预计将上升 1.2°C。温度的升高将使越来越多的工人暴露在极端高温下。

目的

本研究旨在探索使用热电冷却器为冷却带的水循环回路降温的可能性,这种冷却带可以在高温环境下长时间使用。

方法

使用热电冷却器(TEC)和两个风机设计了一个冷却带。TEC 配备了热沉和冷热两侧的铝制热交换块,以有效进行热交换。

结果

在三个不同时间段的实际环境温度条件下进行了实验,平均温度分别为 31、48 和 41°C。带部分的平均温度分别记录为 20.73、24.52 和 21.38°C。入口空气温度和内部冷却带温度之间的最大平均差异为 40.45°C。

结论

实验表明,尽管环境温度升高,但设计原型的冷却性能仍保持在可接受的范围内(18°C)。此外,该冷却系统可用于高温环境,以减少热应激。

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