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Effect of the rotating metal patch on microwave heating uniformity

机译:旋转金属贴剂对微波加热均匀性的影响

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Microwave heating is well known for its efficiency and instantaneity. However, the non-uniformity results of the microwave heating have limited the development of its large-scale industrial application. In order to solve this problem, a metal patch placed on a rotating turntable is proposed as a mode stirrer in this paper. A commercial finite element software, COMSOL Multiphysics, is used to build the proposed model based on a BJ-22 rectangular waveguide and a microwave oven. Maxwell's equations, heat conduction equation, implicit function and level set methods, which are used to realize the rotation of metal patch, are coupled to describe the microwave heating process. The electric field intensity, the temperature, the coefficient of variation and the mean temperature rise in different cases are compared to optimize the parameters of mode stirrer. The point temperatures are measured by optical fibre to verify the simulated results. The results show that the rotation of metal patch has a huge influence on improving the heating uniformity and heating efficiency, but the rotating speed has little influence if the heating time is larger than a rotating period.
机译:微波加热以其效率和瞬时性而闻名。然而,微波加热的不均匀结果限制了其大规模工业应用的发展。为了解决这个问题,本文提出了一种放置在旋转转盘上的金属补片作为模式搅拌器。商业有限元软件COMSOL Multiphysics用于基于BJ-22矩形波导和微波炉构建建议的模型。结合麦克斯韦方程,热传导方程,隐函数和能级设置方法(用于实现金属贴片的旋转)来描述微波加热过程。比较了不同情况下的电场强度,温度,变化系数和平均温升,以优化模式搅拌器的参数。用光纤测量点温度以验证模拟结果。结果表明,金属贴片的旋转对改善加热均匀性和加热效率有很大的影响,但是如果加热时间大于旋转时间,则旋转速度的影响很小。

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