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COMPUTATIONAL FLUID DYNAMICS APPLICABLE TO CLOTH DESIGN

机译:适用于布料设计的计算流体动力学

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摘要

Increasingly, different concepts such as safety, hygiene and comfort interact in the characterization of the workplaces. Being comfortable during periods of low activity, seems to be a requirement for most people and, secondly, in other sectors where performance is critical, the priorities are different. In both cases, the intellectual and physical performance is strongly affected by the sensation of thermal comfort. Thus, various approaches can be applied to provide comfort, for example, in the design of buildings and the selection of appropriate clothing.rnComfortable clothing is a complex and interdisciplinary concept, consisting of a balance of the sensorial, psychological and physiological aspects [1, 2]. In objective terms, the behavior of the human body depends on several factors: temperature, air velocity and humidity, production of metabolic heat and clothing insulation. All these factors determine the heat and mass transfer processes between the human body and the environment.rnThe Computational Fluid Dynamics (CFD) numerical simulation has been a powerful tool in this investigation field. A combined simulation of a room and a thermal manikin has been developed in the FLUENT code. Using a manikin with real dimensions, divided into parts with different temperatures, seems important to give accurate fluid flow and moisture distributions.
机译:在工作场所的特征中,越来越多的不同概念(例如安全,卫生和舒适)相互影响。对于大多数人来说,在低运动量的时期要保持舒适似乎是必需的,其次,在绩效至关重要的其他部门,工作重点是不同的。在这两种情况下,智力和身体表现都受到热舒适感的强烈影响。因此,可以采用各种方法来提供舒适感,例如,在建筑物的设计和合适的衣服的选择中。舒适的衣服是一个复杂而跨学科的概念,包括感官,心理和生理方面的平衡[1, 2]。客观地讲,人体的行为取决于几个因素:温度,空气速度和湿度,代谢热的产生和衣物的隔热性。所有这些因素决定了人体与环境之间的传热和传质过程。rn计算流体动力学(CFD)数值模拟已成为该研究领域的有力工具。用FLUENT代码开发了房间和人体模型的组合模拟。使用实际尺寸的人体模型,将人体模型分成不同的温度,对于提供准确的流体流量和水分分布似乎很重要。

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