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Heat and mass transfer analysis in laser drying

机译:激光干燥中的热和传质分析

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In laser drying, a continuous or pulsed laser beam irradiates the surface of a water-containing porous medium. The high power of the laser beam leads to quick heating of the surface and therefore fast evaporation of water at the surface. As the water at the surface evaporates away, the water inside the medium diffuses towards the surface driven by the water concentration gradient. Traditional treatment of such a diffusion process is based on classical diffusion theories, Fourier's law for heat conduction and Fick's law for mass diffusion. In the case of laser drying, however, a small time scale would lead to diffusion under non-equilibrium conditions. A generalized diffusion theory that takes into account fast transient behavior is therefore needed. This paper presents a numerical analysis of the laser drying process by employing a generalized, Maxwell-Cattaneo equation to treat both heat and mass transfer. Calculations are performed to illustrate the non-classical transport of moisture. The effect of the heat flux density and the initial moisture content on water removal is also investigated.
机译:在激光干燥中,连续或脉冲激光束照射含水多孔介质的表面。激光束的高功率导致表面的快速加热,从而快速蒸发表面。随着表面的水蒸发,介质内的水扩散到由水浓度梯度驱动的表面。这种扩散过程的传统治疗是基于古典扩散理论,傅里叶的热传导法和Fick的大众扩散定律。然而,在激光干燥的情况下,小时间尺度将导致在非平衡条件下扩散。因此需要考虑快速瞬态行为的广义扩散理论。本文介绍了通过采用通用的Maxwell-Cattaneo方程来治疗热量和传质的激光干燥过程的数值分析。进行计算以说明水分的非古典传输。还研究了热通量密度和初始水分含量对水进行的效果。

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