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首页> 外文期刊>Journal of engineering physics and thermophysics >MODELING OF HEAT AND MOISTURE TRANSFER IN WOOD IN FINISH DRYING BY THE ENERGY OF A MICROWAVE FIELD
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MODELING OF HEAT AND MOISTURE TRANSFER IN WOOD IN FINISH DRYING BY THE ENERGY OF A MICROWAVE FIELD

机译:微波场能量模拟木材干燥过程中的湿热传递。

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摘要

A physicomathematical model of heat and moisture transfer in drying materials in the region below the hygroscopicity limit, including also the heating by the energy of a microwave field, has been developed. The developed system of equations has been solved numerically for three cases of drying of a wooden plate: convective drying, drying by the microfield-field energy, and drying combining the above two methods, i.e., combined drying. Results of numerical calculations of the temperature, vapor-pressure, and moisture-content distributions in the cross section of the plate at different instants of time, and also of the change in the average moisture content and temperature in the process of drying, have been presented. The calculation results have been analyzed; conclusions on the differences and distinctive features of convective, microwave, and combined heating and drying have been drawn.
机译:已经建立了在吸湿极限以下区域中干燥材料中的热量和水分传递的物理热力学模型,其中还包括微波场能量的加热。对于木板的三种干燥情况,已开发的方程组已得到数值求解:对流干燥,利用微场能量进行干燥以及结合上述两种方法进行干燥,即组合干燥。在不同的时刻对板的横截面中的温度,蒸气压力和水分含量分布进行数值计算的结果,以及在干燥过程中平均水分含量和温度的变化的数值计算结果已经得到。呈现。分析了计算结果;得出了对流,微波以及加热和干燥相结合的区别和独特特征的结论。

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