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Local clothing thermal properties of typical office ensembles under realistic static and dynamic conditions

机译:在实际的静态和动态条件下典型办公团队的局部服装热性能

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摘要

An accurate local thermal sensation model is indispensable for the effective development of personalized conditioning systems in office environments. The output of such a model relies on the accurate prediction of local skin temperatures, which in turn depend on reliable input data of the local clothing thermal resistance and clothing area factor. However, for typical office clothing ensembles, only few local datasets are available in the literature. In this study, the dry thermal resistance was measured for 23 typical office clothing ensembles according to EN-ISO 15831 on a sweating agile manikin. For 6 ensembles, the effects of different air speeds and body movement were also included. Local clothing area factors were estimated based on 3D scans. Local differences can be found between the measured local insulation values and local area factors of this study and the data of other studies. These differences are likely due to the garment fit on the manikin and reveal the necessity of reporting clothing fit parameters (e.g., ease allowance) in the publications. The increased air speed and added body movement mostly decreased the local clothing insulation. However, the reduction is different for all body parts, and therefore cannot be generalized. This study also provides a correlation between the local clothing insulation and the ease allowance for body parts covered with a single layer of clothing. In conclusion, the need for well-documented measurements is emphasized to get reproducible results and to choose accurate clothing parameters for thermo-physiological and thermal sensation modeling.Electronic supplementary materialThe online version of this article (10.1007/s00484-018-1625-0) contains supplementary material, which is available to authorized users.
机译:准确的局部热感模型对于在办公室环境中有效开发个性化调理系统必不可少。这种模型的输出依赖于局部皮肤温度的准确预测,而该预测又取决于局部衣物热阻和衣物面积因数的可靠输入数据。但是,对于典型的办公室服装组合,文献中只有很少的本地数据集。在这项研究中,根据EN-ISO 15831在出汗的敏捷人体模型上测量了23种典型办公服套装的干热阻。对于6个合奏,还包括不同风速和身体运动的影响。基于3D扫描估算了当地服装面积因素。可以在本研究的测得的局部绝热值和局部面积因数与其他研究的数据之间找到局部差异。这些差异可能是由于人体模型上的服装合身性所致,并显示了在出版物中报告服装合身性参数(例如,舒适度)的必要性。空气速度的增加和身体运动的增加,在很大程度上降低了局部衣物的隔热性。但是,减少量对于身体的各个部位都是不同的,因此不能一概而论。该研究还提供了局部衣物隔热与单层衣物覆盖的身体部位的舒适度之间的相关性。总之,强调需要有据可查的测量结果才能获得可重复的结果并为热生理和热感建模选择准确的服装参数。电子补充材料本文的在线版本(10.1007 / s00484-018-1625-0)包含补充材料,授权用户可以使用。

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