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一种采用相变材料冷却背心的优化双阶段策略,以提高在炎热环境中的舒适度。

An optimal two-bout strategy with phase change material cooling vests to improve comfort in hot environment.

作者信息

Itani Mariam, Ghaddar Nesreen, Ouahrani Djamel, Ghali Kamel, Khater Beatrice

机构信息

Department of Architecture and Urban Planning, College of Engineering, Qatar University, P.O. Box 2713, Doha, Qatar.

Mechanical Engineering Department, American University of Beirut, P.O. Box 11-0236, Beirut 1107-2020, Lebanon.

出版信息

J Therm Biol. 2018 Feb;72:10-25. doi: 10.1016/j.jtherbio.2017.12.005. Epub 2017 Dec 21.

Abstract

Cooling vests incorporating phase change material (PCM) packets are used to improve comfort of workers in hot environments. This work aims to investigate by modeling and experimentation the effect of dividing the working duration into two bouts, where different PCM melting temperatures are used in each bout. An integrated bio-heat and fabric-PCM model predictions of physiological and subjective votes are validated via active human subject testing at hot conditions. A parametric study is performed to select, at two conditions (40°C and 45°C), the optimal PCM melting temperatures of the two bouts that would result with similar thermal comfort and sensation to the optimal single-bout case. The optimal case achieves most reductions in energy use for PCM regeneration, PCM carried weight and material cost. The results of the parametric study showed that heat storage is reduced in the second bout due to wearing the second vest with lower PCM melting temperature, thus thermal comfort and sensation are significantly improved. The optimal case at the 40°C environment uses a vest with 21°C PCMs in the first bout and a vest with 21°C PCMs in the second bout (V21→V21). At 45°C, the optimal case is V18→V10 with significant PCM weight reductions from the reference single bout case by a minimum of 47%. Thus, the issue of extra carried weight that affect metabolism and ease of movement when applying continuous cooling during work have been mitigated by using the two-bout strategy.

摘要

包含相变材料(PCM)包的冷却背心用于提高高温环境下工人的舒适度。这项工作旨在通过建模和实验研究将工作时间分为两个阶段的效果,每个阶段使用不同的PCM熔化温度。通过在炎热条件下的人体主动测试,验证了生理和主观投票的生物热与织物-PCM集成模型预测。进行了一项参数研究,以在两种条件(40°C和45°C)下选择两个阶段的最佳PCM熔化温度,使其产生与最佳单阶段情况相似的热舒适度和感觉。最佳情况在PCM再生的能源使用、PCM携带重量和材料成本方面实现了最大程度的降低。参数研究结果表明,由于穿着PCM熔化温度较低的第二件背心,第二阶段的蓄热减少,从而显著提高了热舒适度和感觉。40°C环境下的最佳情况是第一阶段使用PCM熔化温度为21°C的背心,第二阶段使用PCM熔化温度为21°C的背心(V21→V21)。在45°C时,最佳情况是V18→V10,与参考单阶段情况相比,PCM重量显著减少,至少减少47%。因此,通过采用两阶段策略,减轻了在工作期间应用连续冷却时影响新陈代谢和行动便利性的额外携带重量问题。

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