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An Improved Mathematical Simulation of the Coupled Diffusion of Moisture and Heat in Woll Fabric

机译:织物中湿热耦合扩散的改进数学模拟

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摘要

An improved mathematical model that takes into account the water vapor sorption mechanisms of wool fiber is developed to describe and predict the coupled heat and moisture transport in wool fabrics. The two-stage moisture sorption of wool is handled by a diffusion equation with two sets of variable water vapor diffusion coefficients in the fibers. The improved model is solved numerically by the finite difference method. Predictions form the new model are compared with those from the Nordon-David model and the previous two-stage model, and with experimental observations. Processes of moisture transfer in the air and in fibers and their interaction with heat transfer under humidity transient conditions are illustrated by a series of 3D diagrams.
机译:建立了一种改进的数学模型,该模型考虑了羊毛纤维的水蒸气吸附机理,以描述和预测羊毛织物中热和湿气的耦合传输。羊毛的两级吸湿是通过一个扩散方程来处理的,该方程在纤维中具有两组可变的水蒸气扩散系数。通过有限差分法对改进的模型进行数值求解。将新模型的预测与Nordon-David模型和先前的两阶段模型的预测进行比较,并与实验观察进行比较。一系列3D图说明了空气和纤维中水分的传递过程以及它们在湿度瞬变条件下与热传递的相互作用。

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