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Experimental and Numerical Analysis of Microwave Heating of Water and Oil Using a Rectangular Wave Guide: Influence of Sample Sizes, Positions, and Microwave Power

机译:使用矩形波导管对水和油进行微波加热的实验和数值分析:样品大小,位置和微波功率的影响

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摘要

The heating process of water and oil using microwave oven with rectangular wave guide is investigated numerically and experimentally. The numerical model is validated with an experimental study. The transient Maxwell’s equations are solved by using the finite difference time domain method to describe the electromagnetic field in the wave guide and sample. The temperature profiles and velocity field within sample are determined by the solution of the momentum, energy, and Maxwell’s equations. In this study, the effects of physical parameters, e.g., microwave power, the position of sample in wave guide, size, and thickness of sample, are studied. The results of distribution of electric field, temperature profiles, and velocity field are presented in details. The results show that the mathematical models are in agreement with the experimental data. Conclusively, the mathematical model presented in this study correctly explains the phenomena of microwave heating within the liquid layer.
机译:对矩形波导管微波炉加热水和油的过程进行了数值和实验研究。通过实验研究验证了该数值模型。通过使用时域有限差分法描述波导和样本中的电磁场,可以求解瞬态麦克斯韦方程。样品中的温度曲线和速度场由动量,能量和麦克斯韦方程组的解确定。在这项研究中,研究了诸如微波功率,样本在波导中的位置,样本的大小和厚度等物理参数的影响。详细介绍了电场,温度分布和速度场的分布结果。结果表明,数学模型与实验数据吻合。最后,本研究中提出的数学模型正确地解释了液体层内微波加热的现象。

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