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Numerical Simulation of an Industrial Microwave Assisted Filter Dryer: Criticality Assessment and Optimization

机译:工业微波辅助过滤干燥机的数值模拟:临界度评估和优化

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摘要

Industrial-scale filter dryers, equipped with one or more microwave input ports, have been modelled with the aim of detecting existing criticalities, proposing possible solutions and optimizing the overall system efficiency and treatment homogeneity. Three different loading conditions have been simulated, namely the empty applicator, the applicator partially loaded by both a high-loss and low loss load whose dielectric properties correspond to the one measured on real products. Modeling results allowed for the implementation of improvements to the original design such as the insertion of a waveguide transition and a properly designed pressure window, modification of the microwave inlet's position and orientation, alteration of the nozzles' geometry and distribution, and changing of the cleaning metallic torus dimensions and position. Experimental testing on representative loads, as well as in production sites, allowed for the confirmation of the validity of the implemented improvements, thus showing how numerical simulation can assist the designer in removing critical features and improving equipment performances when moving from conventional heating to hybrid microwave-assisted processing.
机译:装备有一个或多个微波输入端口的工业规模过滤器干燥机已经过建模,旨在检测现有的临界点,提出可能的解决方案,并优化整体系统效率和处理均匀性。模拟了三种不同的加载条件,即空的施药器,该施药器通过高损耗和低损耗两种负荷部分加载,其介电性能与实际产品上的介电性能相对应。建模结果可以实现对原始设计的改进,例如插入波导过渡和正确设计的压力窗口,修改微波入口的位置和方向,改变喷嘴的几何形状和分布以及更改清洁方式金属圆环的尺寸和位置。在有代表性的负载以及在生产现场进行的实验测试可以确认所实施改进措施的有效性,从而显示了数值模拟如何在从常规加热转向混合微波的过程中帮助设计人员消除关键特性并改善设备性能辅助处理。

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