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Development and validation of an empirical equation to predict wet fabric skin surface temperature of thermal manikins

机译:预测热人体模型湿织物皮肤表面温度的经验方程的开发和验证

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摘要

Thermal manikins are useful tools to study clothing comfort and environmental ergonomics. The simulation of sweating can be achieved by putting a highly wicking stretchable knit fabric “skin” on top of the manikin. However, the addition of such a fabric skin makes it difficult to accurately measure the skin surface temperature. Moreover, it takes considerable amount of time to measure the fabric skin surface temperature at each test. At present the attachment of temperature sensors to the wet fabric skin is still a challenge. The distance of the sensors to the fabric skin could significantly influence the temperature and relative humidity values of the wet skin surface. Hence, we conducted an intensive skin study on a dry thermal manikin to investigate the relationships among the nude manikin surface temperature, heat losses and the fabric skin surface temperature. An empirical equation was developed and validated on the thermal manikin „Tore‟ at Lund University. The empirical equation at an ambient temperature 34.0 ºC is Tsk =34.00-0.0103HL. This equation can be used to enhance the prediction accuracy of wet fabric skin surface temperature and the calculation of clothing evaporative resistance.
机译:人体模型是研究服装舒适性和环境人体工程学的有用工具。可以通过在人体模型的顶部放置高度排汗的可拉伸针织面料“皮肤”来模拟出汗。然而,添加这种织物表皮使得难以准确地测量皮肤表面温度。此外,每次测试都需要花费大量时间来测量织物的皮肤表面温度。目前,将温度传感器连接到湿织物皮肤上仍然是一个挑战。传感器到织物皮肤的距离可能会显着影响湿皮肤表面的温度和相对湿度值。因此,我们对干燥的人体模型进行了深入的皮肤研究,以研究人体模型裸表面温度,热损失和织物皮肤表面温度之间的关系。在隆德大学的热人体模型“ Tore”上开发并验证了一个经验方程。环境温度为34.0ºC时的经验公式为Tsk = 34.00-0.0103HL。该方程可用于提高湿织物皮肤表面温度的预测准确性和服装耐蒸发性的计算。

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