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首页> 外文期刊>Drying technology: An International Journal >Multiscale and multilayer structural modeling and simulation on drying of grain packing porous media
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Multiscale and multilayer structural modeling and simulation on drying of grain packing porous media

机译:颗粒填充多孔介质干燥的多尺度多层结构建模与仿真

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摘要

Aiming at the problem of multilayer physical structure for the skeleton of porous media, a multiscale and multilayer structural model of heat and mass transfer processes for drying of grain packing porous media was established by applying the pore network method and multiscale theory. An experimental study on rice drying was conducted in order to validate this model. The simulation and experimental results indicated that the established model could explain the mechanical properties of rice drying well. The rate of heat transfer was faster than the rate of mass transfer and there was a higher moisture gradient inside the rice grain. The diffusion coefficient of rice embryo played an important role in the drying process, and whose effect on drying was larger than the diffusion coefficient of rice hull and chaff. The moisture was imprisoned effectively inside the rice when the diffusion coefficient of rice embryo was very small.
机译:针对多孔介质骨架的多层物理结构问题,运用孔隙网络法和多尺度理论,建立了干燥和传质过程的多尺度多层结构模型。为了验证该模型,进行了水稻干燥的实验研究。仿真和实验结果表明,所建立的模型可以较好地说明水稻干燥的力学性能。传热速率比传质速率快,并且米粒内部的水分梯度较高。稻胚的扩散系数在干燥过程中起着重要作用,其对干燥的影响大于稻壳和谷壳的扩散系数。当水稻胚芽的扩散系数非常小时,水分被有效地囚禁在水稻内部。

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