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Non-equilibrium thermodynamics approach for the coupled heat and mass transfer in microwave drying of compressed lignite sphere

机译:压缩褐煤球微波干燥中耦合热力和传质的非平衡热力学方法

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摘要

The microwave drying of materials is a typical non-equilibrium process. Based on the non-equilibrium thermodynamics fundamentals, a transport model related to the thermal and moisture migration, and molecular polarization coupling transmission mechanism was developed. The microwave drying behavior for the compressed lignite sphere (20 nun in diameter) was simulated numerically in the lignite of the proposed model at the microwave power levels of 231-700 W. The calculated values for the drying and temperature profiles of the sample fitted well the experimental ones with the average deviation of 10% and 16%, respectively. The pumping phenomenon occurred in the sample during the microwave drying according to the variation of the water saturation at the sphere surface. The maximum water saturation at the sample surface was 0.56, which implied no water drops or films formed on the sample surface. The heat flux driven by polarization relaxation could weaken the heat transfer during the whole drying process. The electric-thermal effect would decrease with the increasing of the sample temperature, and the decreasing of the dielectric properties and the microwave energy intensity.
机译:材料的微波干燥是一种典型的非平衡过程。基于非平衡热力学基础,开发了与热和水分迁移相关的运输模型和分子极化耦合传动机构。在微波功率水平为231-700W的所提出模型的褐煤中,模拟压缩褐煤球的微波干燥行为(直径为20寸)。样品的干燥和温度轮廓的计算值井实验性分别分别为10%和16%的平均偏差。根据球面在球面上的水饱和的变化期间,在微波干燥过程中发生泵送现象。样品表面的最大水饱和度为0.56,其暗示在样品表面上没有暗示在样品表面上形成的水滴或薄膜。通过偏振弛豫驱动的热通量可以削弱整个干燥过程中的热传递。随着样品温度的增加,电气热效应和微波能量强度的降低将降低。

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