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Heat and mass transfer of adult incontinence briefs in computational simulations and objective measurements

机译:成人失禁三角裤的热量和质量传递在计算模拟和客观测量中的应用

摘要

This study aims to evaluate the heat and mass transfer of two kinds of multilayer adult incontinence briefs (diapers for short) in the dry condition and dynamic heat and moisture transfer processes in the wet condition in computational simulations and objective measurements. A commercial disposable brief (PROTEC) with polyethylene, superabsorbent polymers (SAP) and polypropylene, and another kind reusable brief (Reusable) with waterproof breathable fabric, full cotton inner pad and moisture management treatment nonwoven were evaluated. A software platform (S-smart system) with user friendly interfaces was employed in computational simulations. Wear trials were conducted by asking young female adults between 20 and 26 years old to wear incontinence briefs. Objective measurements revealed that there was significantly higher liquid moisture management capacity, water vapor permeability, thermal conductance and maximum value of heat flux in the Reusable than in PROTEC briefs. The simulation and wear trial results showed that there were significantly lower temperatures and humidity at the skin in the diaper area and diaper inner surface fabric in the Reusable briefs compared to the PROTEC ones. The good agreement between simulations and wear trials were observed. The 2D and 3D directly visualizes the changes of fabric temperature/humidity gradient and capacity of absorbing moisture etc. in each layer. The results indicate that the superior fabric's heat/moisture transporting properties, when incorporated into diapers, is the main mechanism for reducing heat and wetness of the diaper area. The results provide guidance for the optimal design of Eco-friendly diapers with reusable, breathable, biodegradable materials.
机译:这项研究的目的是通过计算模拟和客观测量评估两种在干燥状态下的多层成人失禁三角裤(简称尿布)的传热和传质,以及在潮湿条件下的动态传热和水分传递过程。评估了使用聚乙烯,超吸收性聚合物(SAP)和聚丙烯的商用一次性内裤(PROTEC),以及另一种具有防水透气织物,全棉内垫和湿气处理无纺布的可重复使用内裤(Reusable)。在计算仿真中采用了具有用户友好界面的软件平台(S-智能系统)。穿用试验是通过要求20至26岁之间的年轻女性穿着失禁内裤来进行的。客观测量表明,与PROTEC内裤相比,可重复使用中的液体水分管理能力,水蒸气渗透性,导热性和热通量最大值明显更高。模拟和磨损试验结果表明,与PROTEC相比,可重复使用的三角内裤的尿布区域和尿布内表面织物的皮肤温度和湿度明显较低。观察到模拟与磨损试验之间的良好一致性。 2D和3D可直接可视化每一层中织物温度/湿度梯度的变化以及吸收水分的能力等。结果表明,当将优异的织物结合到尿布中时,其热/湿传输性能是减少尿布区域的热和湿性的主要机理。结果为使用可重复使用,透气,可生物降解材料的环保尿布的最佳设计提供了指导。

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