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Numerical analysis of microwave heating cavity: Combining electromagnetic energy, heat transfer and fluid dynamics for a NaY zeolite fixed-bed

机译:微波加热腔的数值分析:结合NY沸石固定床的电磁能,传热和流体动力学

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Three-dimensional mathematical model was developed for a rectangular TE10n microwave heating cavity system, working at 2.45 GHz. Energy/heat, momentum equations were solved together with Maxwell's electromagnetic field equations using comm. MULTIPHYSICS (R) simulation environment. The dielectric properties, epsilon' and epsilon '', of NaY zeolite (Si/Al = 2.5) were evaluated as a function of temperature. Considering these values, the microwave heating of a porous fixed-bed made of dry NaY zeolite was simulated. Electric field distribution, axial and radial temperature profiles and temperature evolution with time were obtained. The zeolite fixed bed was heated up to 180 degrees C in 5 min, with 30 W power. The fixed-bed temperature evolution under non-steady state conditions showed the same trend as the one observed experimentally with only an average deviation of 10.3%. The model was used to predict microwave heating of other materials improving energy efficiency of the microwave cavity. Furthermore, the developed model was able to predict thermal runaway for zeolites.
机译:为矩形TE10N微波加热腔系统开发了三维数学模型,工作在2.45GHz。能量/热量,动量方程与Maxwell的电磁场方程一起解决了Comm。 MultiphySics(R)仿真环境。将NY沸石(Si / Al = 2.5)的介电性质,ε'和ε'作为温度的函数评价。考虑到这些值,模拟了由干燥的沸石制成的多孔固定床的微波加热。获得电场分布,轴向和径向温度分布和随时间的温度演化。沸石固定床在5分钟内加热至180℃,电源30 W。在非稳态条件下的固定床温度演变表现出与实验观察到的趋势相同的趋势,只有10.3%的平均偏差。该模型用于预测其他材料的微波加热,提高微波腔的能量效率。此外,开发的模型能够预测沸石的热失控。

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