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Theoretical investigation of temperature distribution uniformity in wood during microwave drying in three-port feeding circular resonant cavity

机译:三端口饲料圆形谐振腔微波干燥过程中木材温度分布均匀性的理论研究

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摘要

The temperature distribution within wood samples during microwave drying is significantly influenced by the dimensions of the wood sample, microwave frequency, heating time, and moisture content of the wood. Here, the temperature distribution inside the wood during microwave drying has been studied by finite element analysis in a three-port feeding circular resonant cavity. With an increasing radius of the wood, the calculated temperature variation coefficient decreased from 54.3 to 23.5% and the energy efficiency increased from 18 to 95%. When the radius of the wood was 0.8 times that of the circular cavity, the drying process was optimal. The theoretical calculations indicated that the length of the wood also affects the temperature variation coefficient. When the length of wood was more than the height of waveguide, the temperature variation coefficient was less than 40.5% and the energy efficiency was more than 90%. Other factors such as microwave frequency, heating time, and moisture content also influenced the uniformity of temperature distribution. This study helps to better understand the microwave drying process to facilitate its further applications for wood drying.
机译:微波干燥过程中木样品中的温度分布受到木材样品,微波频率,加热时间和木材的水分含量的尺寸的显着影响。这里,通过在三端口馈送圆形谐振腔中的有限元分析中研究了微波干燥过程中木材内的温度分布。随着木材半径的增加,计算的温度变化系数从54.3减少到23.5%,能效从18%增加到95%。当木材的半径为圆形腔的0.8倍时,干燥过程是最佳的。理论计算表明,木材的长度也影响温度变化系数。当木材长度超过波导的高度时,温度变化系数小于40.5%,能量效率大于90%。微波频率,加热时间和水分含量等其他因素也影响了温度分布的均匀性。本研究有助于更好地了解微波干燥过程,以促进其用于木材干燥的进一步应用。

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