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一种潜在的可穿戴式解决方案,用于预防工作场所的热应激:通风夹克的冷却效果和总蒸发阻力。

A potential wearable solution for preventing heat strain in workplaces: The cooling effect and the total evaporative resistance of a ventilation jacket.

机构信息

INAIL, Department of Occupational and Environmental Medicine, Epidemiology and Hygiene, Laboratory of Ergonomics and Physiology, Via Fontana Candida 1, 00078, Monte Porzio Catone, Rome, Italy.

INAIL, Department of Occupational and Environmental Medicine, Epidemiology and Hygiene, Laboratory of Ergonomics and Physiology, Via Fontana Candida 1, 00078, Monte Porzio Catone, Rome, Italy; Unit of Advanced Robotics and Human-Centred Technologies, Campus Bio-Medico University of Rome, Rome, Italy.

出版信息

Environ Res. 2022 Sep;212(Pt D):113475. doi: 10.1016/j.envres.2022.113475. Epub 2022 May 16.

Abstract

The increase in average seasonal temperatures has an impact in the occupational field, especially for those sectors whose work activities are performed outdoors (agricultural, road and construction sectors). Among the adaptation measures and solutions developed to counteract occupational heat strain, personal cooling garments represent a wearable technology designed to remove heat from the human body, enhancing human performance. This study aims to investigate the effectiveness and the cooling power of a specific cooling garment, i.e. a ventilation jacket, by quantifying the evaporative heat losses and the total evaporative resistance both when worn alone and in combination with a work ensemble, at three adjustments of air ventilation speed. Standardised "wet" tests in a climatic chamber were performed on a sweating manikin in isothermal conditions considering three clothing ensembles (single jacket, work ensemble and a combination of both) and three adjustments of fan velocity. Results showed a significant increase (p < 0.001) in evaporative heat loss values when the fan velocity increased, particularly within the trunk zones for all the considered clothing ensembles, showing that fans enhanced the dissipation by evaporation. The cooling power, quantified in terms of percent changes of evaporative heat loss, showed values exceeding 100% when fans were on, in respect to the condition of fans-off, for the trunk zones except for the Chest. A significant (p < 0.01) decrease (up to 42.3%) in the total evaporative resistance values of the jacket, coupled with the work ensemble, was found compared to the fans-off condition. Results confirmed and quantified the cooling effect of the ventilation jacket which enhanced the evaporative heat losses of the trunk zones, helping the body to dissipate heat and showing the potential for a heat adaptation measure to be developed.

摘要

平均季节性温度的升高对职业领域有影响,尤其是对那些户外工作活动的部门(农业、道路和建筑部门)。为了应对职业热应激,已经开发了一些适应措施和解决方案,其中个人冷却服装是一种可穿戴技术,旨在从人体中去除热量,提高人体性能。本研究旨在通过量化单独穿着和与工作服组合穿着时的蒸发散热损失和总蒸发阻力,来研究一种特定的冷却服装(通风夹克)的效果和冷却能力,同时考虑三种空气通风速度的调节。在恒温室内对出汗人体模型进行了标准的“湿”测试,考虑了三种服装(单夹克、工作服和两者的组合)和三种风扇速度调节。结果表明,当风扇速度增加时,蒸发散热损失值显著增加(p<0.001),特别是在所有考虑的服装组合的躯干区域,表明风扇增强了蒸发散热。以蒸发散热损失百分比变化为单位的冷却能力,当风扇开启时,除了胸部区域,在躯干区域的数值超过 100%,与风扇关闭时相比。与风扇关闭条件相比,与工作服结合使用时,夹克的总蒸发阻力值显著降低(p<0.01),降幅高达 42.3%。结果证实并量化了通风夹克的冷却效果,它增强了躯干区域的蒸发散热损失,有助于身体散热,并显示出开发热适应措施的潜力。

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