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基于三维服装模型中空隙值的人体传热系统建模与仿真

Modeling and Simulation of Human Body Heat Transfer System Based on Air Space Values in 3D Clothing Model.

作者信息

Mosleh Sara, Abtew Mulat Alubel, Bruniaux Pascal, Tartare Guillaume, Loghin Emil-Constantin, Dulgheriu Ionut

机构信息

ENSAIT-GEMTEX Laboratory, 2 Allée Louise et Victor Champier, Lille Université, 59056 Roubaix, France.

Ethiopian Institute of Textile and Fashion Technology, Bahir Dar University, Bahir Dar 1037, Ethiopia.

出版信息

Materials (Basel). 2021 Nov 5;14(21):6675. doi: 10.3390/ma14216675.

Abstract

Comfort can be considered as subjective feeling, which could be affected by the external ambient, by the physical activity, and by clothing. Considering the human body heat transfer system, it mainly depends on various parameters including clothing materials, external and internal environment, etc. The purpose of the current paper is to study and establish a quantitative relationship between one of the clothing parameters, ease allowance (air gap values) and the heat transfer through the human body to clothing materials and then to the environment. The study considered clothing which is integrated with the 3D ease allowance from the anthropometric and morphological data. Such incorporating of the clothing's 3D ease control was essential to properly manage the air space between the body and the proposed clothing thermal regulation model. In the context of thermal comfort, a clothing system consisting of the human body, an ease allowance under clothing, a layer of textile materials, and a peripheral layer adjacent to the textile material was used. For the complete system, the heat transfer from the skin to the environment, which is influenced by thermoregulation of the human body, air gap, tissue, and environmental conditions were also considered. To model and predict the heat transfer between the human body and the temperature of skin and clothes, a 3D adaptive garment which could be adjusted with ease allowance was used. In the paper, a thermoregulatory model was developed and proposed to predict the temperature and heat within clothing material, skin, and air space. Based on the result, in general the main difference in the temperature of clothing and skin from segment to segment is due to the uneven distribution of air layers under the clothing.

摘要

舒适度可被视为一种主观感受,它会受到外部环境、身体活动以及衣物的影响。考虑到人体热传递系统,它主要取决于包括衣物材料、外部和内部环境等各种参数。本文的目的是研究并建立衣物参数之一——宽松量(气隙值)与通过人体到衣物材料再到环境的热传递之间的定量关系。该研究考虑了根据人体测量和形态学数据整合了三维宽松量的衣物。这种对衣物三维宽松控制的纳入对于妥善管理身体与所提出的衣物热调节模型之间的空气空间至关重要。在热舒适度的背景下,使用了一个由人体、衣物下的宽松量、一层纺织材料以及与纺织材料相邻的外围层组成的衣物系统。对于整个系统,还考虑了受人体体温调节、气隙、组织和环境条件影响的从皮肤到环境的热传递。为了模拟和预测人体与皮肤及衣物温度之间的热传递,使用了一种可通过宽松量进行轻松调节的三维自适应服装。在本文中,开发并提出了一个温度调节模型,以预测衣物材料、皮肤和空气空间内的温度和热量。基于结果,一般来说,各部位衣物和皮肤温度的主要差异是由于衣物下空气层分布不均造成的。

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