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Theoretical Analysis of Three Methods for Calculating Thermal Insulation of Clothing from Thermal Manikin

机译:人体模型计算衣服隔热的三种方法的理论分析

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摘要

There are three methods for calculating thermal insulation of clothing measured with a thermal manikin, i.e. the global method, the serial method, and the parallel method. Under the condition of homogeneous clothing insulation, these three methods yield the same insulation values. If the local heat flux is uniform over the manikin body, the global and serial methods provide the same insulation value. In most cases, the serial method gives a higher insulation value than the global method. There is a possibility that the insulation value from the serial method is lower than the value from the global method. The serial method always gives higher insulation value than the parallel method. The insulation value from the parallel method is higher or lower than the value from the global method, depending on the relationship between the heat loss distribution and the surface temperatures. Under the circumstance of uniform surface temperature distribution over the manikin body, the global and parallel methods give the same insulation value. If the constant surface temperature mode is used in the manikin test, the parallel method can be used to calculate the thermal insulation of clothing. If the constant heat flux mode is used in the manikin test, the serial method can be used to calculate the thermal insulation of clothing. The global method should be used for calculating thermal insulation of clothing for all manikin control modes, especially for thermal comfort regulation mode. The global method should be chosen by clothing manufacturers for labelling their products. The serial and parallel methods provide more information with respect to the different parts of clothing.
机译:有三种方法来计算用人体模型测得的衣服的隔热性,即整体方法,串行方法和并行方法。在均匀的衣物隔热条件下,这三种方法得出的隔热值相同。如果人体模型上的局部热通量均匀,则全局方法和串行方法将提供相同的隔热值。在大多数情况下,串行方法提供的绝缘值要高于全局方法。串行方法的绝缘值可能低于全局方法的绝缘值。串行方法始终提供比并行方法更高的绝缘值。平行方法的隔热值高于或低于整体方法的隔热值,具体取决于热量损失分布与表面温度之间的关系。在人体模型表面温度分布均匀的情况下,整体和并行方法给出的隔热值相同。如果人体模型测试中使用恒定表面温度模式,则可以使用并行方法来计算衣服的隔热性。如果人体模型测试中使用恒定热通量模式,则可以使用串行方法来计算衣服的隔热性。对于所有人体模型控制模式,特别是对于热舒适度调节模式,应使用全局方法来计算服装的隔热性。服装制造商应选择全局方法来标记其产品。串行和并行方法提供有关衣服不同部分的更多信息。

著录项

  • 来源
    《Annals of Occupational Hygiene》 |2012年第6期|p.728-735|共8页
  • 作者

    Jianhua Huang*;

  • 作者单位

    College of Textiles, Wuhan Textile University, Wuhan, Hubei 430073, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 01:11:08

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