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Computational Fluid Dynamics Modeling of Fabric Systems for Intelligent Garment Design

机译:用于智能服装设计的织物系统的计算流体动力学建模

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摘要

Protective clothing provides laboratory and hazardous-materials workers, firefighters, military personnel, and others with the means to control their exposure to chemicals, biological materials, and heat sources. Depending on the specific application, the textile materials used in protective clothing must provide high performance in a number of areas, for example, impermeability to hazardous chemicals, breathability, light weight, low cost, and durability. Models based on computational fluid dynamics have been developed to predict the performance of protective clothing materials. Such models complement testing by enabling property data from laboratory materials tests to be used in predictions of the performance of integrated multilayer garments under varying environmental conditions.
机译:防护服为实验室和危险材料工作人员,消防员,军事人员及其他人员提供了控制其接触化学药品,生物材料和热源的方法。取决于特定的应用,防护服中使用的纺织材料必须在许多领域提供高性能,例如,对危险化学品的不渗透性,透气性,轻质,低成本和耐用性。已经开发了基于计算流体动力学的模型来预测防护服材料的性能。这样的模型通过使来自实验室材料测试的性能数据能够用于预测在各种环境条件下集成多层服装的性能,来补充测试。

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