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Exergy Analysis and Human Body Thermal Comfort Conditions: Evaluation of Different Body Compositions

机译:Deerveny分析和人体热舒适条件:评价不同的身体组成

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摘要

This article focuses on studying the effects of muscle and fat percentages on the exergy behavior of the human body under several environmental conditions. The main objective is to relate the thermal comfort indicators with exergy rates, resulting in a Second Law perspective to evaluate thermal environment. A phenomenological model is proposed of the human body with four layers: core, muscle, fat and skin. The choice of a simplified model is justified by the facility to variate the amount of mass in each tissue without knowing how it spreads around the body. After validated, the model was subjected to a set of environmental conditions and body compositions. The results obtained indicate that the area normalization (Watts per square meter) may be used as a safe generalization for the exergy transfer to environment. Moreover, the destroyed exergy itself is sufficient to evaluate the thermal sensation when the model is submitted to environmental temperatures lower than that considered for the thermal neutrality condition (and, in this text, the thermal comfort) . Nevertheless, for environments with temperatures higher than the calculated for the thermal neutrality, the combination of destroyed exergy and the rate of exergy transferred to the environment should be used to properly evaluate thermal comfort.
机译:本文侧重于研究肌肉和脂肪百分比对人体在几个环境条件下的暴露行为的影响。主要目的是将热舒适指标与高级速率联系起来,导致第二法律视角来评估热环境。用四层的人体提出了一种现象学模型:核心,肌肉,脂肪和皮肤。简化模型的选择是由设施的理由,以在不知道其周围蔓延的情况下变化每个组织中的质量量。经过验证后,将模型进行一组环境条件和身体组成。所获得的结果表明,面积标准化(瓦特/平方米)可以用作驱动到环境的安全概括。此外,当模型提交到低于热中立条件(以及本文中,热舒适性)时,被破坏的驱动器本身足以评估热敏感觉。然而,对于温度高于热中立性的环境,应使用被破坏的声除和排放到环境中的暴力速率的组合来适当地评估热舒适度。

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