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Investigation of heat transfer and temperature distribution in outdoor human-clothing-environment systems with double-layered ensemble

机译:双层集成室外人体环境的传热与温度分布研究

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摘要

The thermal behavior in a clothing microclimate is an important aspect related to thermal comfort. Situation-dependent analyses are required to understand the heat transfer of clothing; thus, the heat transfer and temperature distributions in a double-layered human-clothing-environment system in the presence of solar radiation are investigated as practical application in this study. A new heat transfer model modified from the previously proposed outdoor thermal model with single-layered clothing is developed. The new model integrates the radiative effects on clothing, the heat conduction within the air layer, and the heat convection on the outer surface of clothing. Radiation heat transfer is included as a source term for the clothing. Measurements of the temperature distributions are obtained under typical summer and winter atmospheric conditions with or without solar radiation to validate the model. A comparison confirms that the prediction model is valid. Subsequently, the effects of layered clothing are analyzed. Since insulation fundamentally influences the temperature distributions in the steady-state system, the temperatures at the boundary and air gap determine the slopes of the temperature distribution. Since the absorbed solar energy is more influential than the release of heat by conduction or even convection for clothing, the solar radiation and radiative properties are relatively dominant at the temperature distribution of clothing and consequently the entire system. Overall, the effects of solar radiation and the properties related to radiation are essential for evaluating the microclimate inside clothing.
机译:衣物微气候中的热行为是与热舒适性相关的重要方面。需要根据情况进行分析,以了解衣物的热传递;因此,研究了在存在太阳辐射的双层人-衣服-环境系统中的传热和温度分布作为本研究的实际应用。开发了一种新的传热模型,该模型是从先前提出的带有单层衣服的室外热模型修改而来的。新模型整合了对衣服的辐射效应,空气层内的热传导以及衣服外表面的热对流。辐射热传递是衣服的来源术语。温度分布的测量是在有或没有太阳辐射的典型夏季和冬季大气条件下进行的,以验证模型。比较确认预测模型是有效的。随后,分析了分层服装的效果。由于绝缘从根本上影响稳态系统中的温度分布,因此边界和气隙处的温度决定了温度分布的斜率。由于吸收的太阳能比通过传导或对流释放的热量对衣服的影响更大,因此在衣服的温度分布以及整个系统的温度分布中,太阳辐射和辐射特性相对占主导地位。总体而言,太阳辐射的影响以及与辐射有关的特性对于评估衣服内部的微气候至关重要。

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