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On modelling the drying of porous materials: analytical solutions to coupled partial differential equations governing heat and moisture transfer

机译:关于多孔材料干燥的建模:控制热量和水分传递的耦合偏微分方程的解析解

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摘要

Luikov's theory of heat and mass transfer provides a framework to model drying porous materials. Coupled partial differential equations governing the moisture and heat transfer can be solved using numerical techniques, and in this paper we solve them analytically in a setting suitable for industrial drying situations. We discuss the nature of the solutions using the physical properties of Pinus radiata. It is shown that the temperature gradients play a significant role in deciding the moisture profiles within the material when thickness is large and that models based only on moisture potential gradients may not be sufficient to explain the drying phenomena in moist porous materials.
机译:Luikov的传热传质理论为干燥多孔材料的建模提供了框架。可以使用数值技术来解决支配水分和热传递的耦合偏微分方程,在本文中,我们在适合工业干燥情况的环境中通过解析方式求解它们。我们使用辐射松的物理特性讨论解决方案的性质。结果表明,当厚度较大时,温度梯度在决定材料中的水分分布方面起着重要作用,仅基于水分势梯度的模型可能不足以解释潮湿多孔材料中的干燥现象。

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