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首页> 外文期刊>AIChE Journal >Forced Confection lass Deposition and Heat Transfer onto a Cylinder Sheathed by Protective laments
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Forced Confection lass Deposition and Heat Transfer onto a Cylinder Sheathed by Protective laments

机译:强制糖食沉积和传热到带有保护性叹气的圆柱护套上

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摘要

In chemical, biological, radiological, and nuclear protective clothing, a layer of activated carbon material in between two textile layers provides protection against hazardous gases. A cylinder in cross flow, sheathed by such material, is generally used to experimentally test the garment properties. This is, however, complicated and predictive models are needed. We present a computational fluid dynamics model for the initial phase in which the carbon filter material is not yet saturated. The textiles are modeled as chemically inactive porous layers, the carbon filter particles have been resolved explicitly. The model has been validated against experimental data. We demonstrate that (1) computational fluid dynamics simulations can be used for the efficient design and optimization of protective garments, and (2) the addition of a highly porous active carbon layer highly increases the chemical protection capabilities, while having relatively little negative impact on the thermal comfort of protective garments.
机译:在化学,生物,放射和核防护服中,两层纺织层之间的一层活性炭材料可防止有害气体进入。被这种材料包裹的横流圆柱体通常用于实验性地测试服装性能。但是,这是复杂且可预测的模型。我们为碳过滤材料尚未饱和的初始阶段提供了计算流体动力学模型。纺织品被建模为无化学活性的多孔层,碳过滤器颗粒已得到明确解析。该模型已针对实验数据进行了验证。我们证明(1)计算流体动力学模拟可用于防护服的有效设计和优化,并且(2)添加高度多孔的活性炭层可大大提高化学防护能力,同时对防护服的负面影响相对较小防护服的热舒适性。

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