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An approach for simulating the microwave heating process with a slow- rotating sample and a fast-rotating mode stirrer

机译:一种用于模拟微波加热过程的方法,具有慢速旋转样品和快速旋转模式搅拌器

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摘要

Moving elements have been widely used in microwave heating process, especially mode stirrers and turntables. However, the huge difference in speed of these two elements makes the simulation of this heating process difficult to achieve. In this work, the heating process is computed by a step-by-step algorithm based on implicit function and level set methods. In each time step, the slow- rotating heated sample is considered as static while the fast-rotating mode stirrer have rotated a certain angle. The heat source in this time step is obtained by averaging the dissipated powers with mode stirrer in different angles. Moreover, the calculation amount is reduced by transformation methods based on the symmetry of geometric structure. In addition, heating process with different time step lengths and numbers of mode stirrer angles have been computed to analyze the model sensitivity. Experiments are also carried out to validate the effectiveness of the proposed method. Simulated results are in accordance with experimental ones. The combined effect of mode stirrer and turntable on microwave heating is analyzed. This model can serve as an effective method to deal with the thermal analysis with unequal velocity moving elements during the microwave heating. (C) 2019 Published by Elsevier Ltd.
机译:移动元件已广泛用于微波加热过程,尤其是模式搅拌器和转盘。然而,这两个元素的速度巨大差异使得这种加热过程的模拟难以实现。在这项工作中,通过基于隐式函数和级别设置方法的逐步逐步算法来计算加热过程。在每个时间步骤中,慢旋转的加热样品被认为是静态的,而快速旋转模式搅拌器旋转一定的角度。通过在不同角度的不同角度平均散热功率的散流功率来获得该时间步骤中的热源。此外,通过基于几何结构对称的转换方法减少了计算量。另外,已经计算了具有不同时间步长的加热过程和模式搅拌角的数量以分析模型灵敏度。还进行了实验以验证所提出的方法的有效性。模拟结果符合实验结果。分析了模式搅拌器和转盘对微波加热的组合效果。该模型可以作为处理在微波加热期间用不等速移动元件进行热分析的有效方法。 (c)2019年由elestvier有限公司发布

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