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Development of methods for the digital representation of the thermal wearing comfort of outdoor clothing

机译:户外服装热磨损舒适性数字表示方法的开发

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A multi-model pore system, which includes the micro, meso, macro and mega pores, develops between fibers, yams, fabrics or multilayer fabrics and human body respectively during wearing clothes. This multi-model pore system significantly affects thermodynamic processes of human and consequently the thermal wearing comfort of outdoor and protective clothing. The objectives of the research are to analyze this effect and to develop application-oriented principles and processes for the holistic simulation of outdoor clothing according to geometrical, textile-physical, and thermal parameters. To achieve the required aim clothing samples for five selected test persons are developed and sewed and the textile materials are comprehensively characterized. The size distribution of the mega pores are identified by the lit simulation and the wear trials are conducted in climate chamber to analyze the heat transfer between body and clothing system. In this paper the thermal simulation of the jacket and test person 1 is presented. This innovative approach will give the opportunity to analyze the effect of body shape, design of clothing, environmental conditions and level of activity of human.
机译:一种多模型孔系统,包括微型,中索,宏观和巨型孔,分别在穿衣服期间分别在纤维,山药,织物或多层织物和人体之间开发。这种多模型孔隙​​系统显着影响人类的热力学过程,从而产生了户外和防护服的热佩戴舒适性。该研究的目标是分析这种效果,并根据几何,纺织物理和热参数开发面向户外服装整体仿真的应用原理和工艺。为实现所需的AIM服装,开发和缝制了五种选定的测试人员的样品,纺织材料综合地表征。通过LIT模拟鉴定Mega孔的尺寸分布,并且在气候室进行磨损试验,以分析身体和衣物系统之间的传热。本文提出了夹克和测试人员1的热模拟。这种创新方法将赋予机会分析身体形状,服装设计,环境条件和人类活动水平的影响。

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