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Analyzing Convective Heat and Mass Transfer in Through-Air Drying of Fabrics

机译:织物空气干燥中的对流传热传质分析

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In studying the through-air drying (TAD) of tissues and towels, the heating of TAD fabrics as part of the overall system is considered for the first time. For a simple, single-layer TAD fabric structure, convective drying and heating is modeled using wellknown heat and mass transfer models deveoped in general chemicla engineering practice. The models are circular pipe flow, flow over cylinder, and packed bed. All three models predict a long fabric drying period and a quick fabric heating period. The constant temperatures of the fabrics during the fabric drying period predicted by all three models are nearly the same, and are close to the adiabatic saturation temperature of the inlet air, depending only on the temperature and supply humidity and not on the air flow rate. The drying rates predicted by the packed bed and flow over cylinder models are significantly higher than that by the circular pipe flow model. Further verification of the suitability of using either the packed bed or the flow model. Further verification of the suitabilithy of using either the packed bed or the flow over cylinder model to simulate fabric drying and heating during through-air drying is suggested.
机译:在研究薄纸和毛巾的空气干燥(TAD)时,首次考虑将TAD织物作为整个系统的一部分进行加热。对于简单的单层TAD织物结构,对流干燥和加热使用一般的化学工程实践中已知的传热和传质模型进行建模。模型为圆形管道流,圆柱体流和填充床。这三个模型都预测了较长的织物干燥时间和较快的织物加热时间。所有这三个模型预测的在织物干燥期间的织物恒定温度几乎相同,并且接近进口空气的绝热饱和温度,仅取决于温度和供应湿度,而不取决于空气流速。由填充床和通过圆柱流模型预测的干燥速率显着高于由圆形管道流模型预测的干燥速率。进一步验证是否使用填充床或流动模型。建议进一步验证是否使用填充床或流式圆筒模型来模拟通过空气干燥过程中的织物干燥和加热。

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