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Numerical modeling of microwave induced natural convection inside a rectangular wave guide

机译:微波诱导矩形波导内自然对流的数值模型

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The heating of liquid layer by microwave in a rectangular wave guide has been investigated numerically and experimentally. It was performed for two different liquids, water and NaCl-water solution. A complete mathematical model is proposed, which uses a comprehensive two-dimensional heat and momentum equations to describe unsteady temperature and fluid flow fields, coupled with a complete solution of the three-dimensional Maxwell's equations in the time domain (FDTD), can be used to investigate many aspects of heating process. In this study, the effects of the electric conductivity (which corresponds to the percentage by weight of NaCl in liquid layer) and microwave power level on the heating process were examined. Based on a model combining the Maxwell and heat transport and fluid flow equations, the results showed that the heating process strongly depends on the dielectric properties.
机译:在数值和实验上研究了通过微波在矩形波导中加热液体层的加热。它对两种不同的液体,水和NaCl水溶液进行。提出了一种完整的数学模型,它使用综合的二维热和动量方程来描述不稳定的温度和流体流场,可以使用与时域(FDTD)中的三维麦克斯韦方程的完整解决方案耦合调查加热过程的许多方面。在该研究中,检查了电导率(对应于液体层中NaCl中NaCl的重量百分比)和微波功率水平的电导率的影响。基于组合麦克斯韦和热传输和流体流动方程的模型,结果表明加热过程强烈取决于电介质特性。

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