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Simultaneous heat and mass transport in paper sheets during moisture sorption from humid air

机译:在潮湿空气中吸收水分的过程中,纸张同时进行热量和质量传递

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A model of simultaneous heat and mass transfer is presented to explain transient moisture sorption by paper sheets from humid air. The model is developed to place parametric dependencies on the mass and heat transfer resistances. The magnitude of these resistances are then estimated by comparing the model to experimental measurements of the moisture and temeprature dynamics of a paper sheet during sorption transients. Several aberrant behaviors are also explained by accounting for nonlinear interactions during transient moisture transport. First, the differences intime to obtain equilibrium when approaching different moisture contents are explained by the nonlinearity of the moisture content isotherm. Second, heat is released during moisture sorption due to the heat of absorption. Temperature excursions of as much as 6 deg C are measured by a remote IR probe. The temeprature changes in the sheet cause the moisture content to change along different isotherms. Dynamic measures of the temperature of the sheet are compared to predictions derived by including thermal effects into the porous sheet model of moisture transport. The effect of these temperature excursions on the shape of the moisture transients is also discussed.
机译:提出了同时传热和传质的模型,以解释纸张从潮湿空气中短暂吸收水分。开发该模型的目的是将参数依赖性依赖于传质和传热阻力。然后,通过将模型与吸附瞬态过程中纸张的水分和温度动态变化的实验测量值进行比较,可以估算出这些电阻的大小。还通过解释瞬态水分传输过程中的非线性相互作用来解释几种异常行为。首先,水分含量等温线的非线性解释了接近不同水分含量时获得平衡的时间差异。其次,由于吸收热,在水分吸收期间释放热量。远红外探头测得的温度偏差高达6摄氏度。片材的温度变化导致水分含量沿着不同的等温线变化。将片材温度的动态测量结果与通过将热效应纳入水分传输的多孔片材模型而得出的预测结果进行比较。还讨论了这些温度偏移对水分瞬态形状的影响。

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