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Effect of Electric Field Distribution on the Heating Uniformity of a Model Ready-to-Eat Meal in Microwave-Assisted Thermal Sterilization Using the FDTD Method

机译:电场分布对使用FDTD方法微波辅助热灭菌在微波辅助膳食的型号的加热均匀性的影响

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摘要

Microwave assisted thermal sterilization (MATS) is a novel microwave technology currently used in the commercial production of ready-to-eat meals. It combines surface heating of high-temperature circulation water with internal microwave heating in cavities. The heating pattern inside the food packages in a MATS process depends heavily on the electric field distribution formed by microwaves from the top and bottom windows of the microwave heating cavities. The purpose of this research was to study the effect of the electric field on 922 MHz microwave heating of ready-to-eat meals as they moved through the microwave chamber of a pilot-scale MATS system using the finite-difference time-domain (FDTD) method. A three-dimensional numerical simulation model was developed as a digital twin of the MATS process of food moving through the microwave chamber. The simulation showed that the electric field intensity of the MATS microwave cavity was greatest on the surface and side edge of the cavity and of the food. There was a strong similarity of the experimental heating pattern with that of the electric field distribution simulated by a computer model. The digital twin modeling approach can be used to design options for improving the heating uniformity and throughput of ready-to-eat meals in MATS industrial systems.
机译:微波炉辅助热灭菌(垫子)是目前用于商业生产膳食的商业生产的新型微波技术。它将高温循环水的表面加热与内部微波加热相结合。在垫过程中的食物包装内的加热图案在很大程度上取决于通过微波加热腔的顶部和底部窗口形成的电场分布。本研究的目的是研究电场在使用有限差分时间域(FDTD)穿过先导型垫系统的微波室时的922MHz微波加热的效果。(FDTD ) 方法。三维数值模拟模型是作为通过微波室移动的垫子过程的数字双胞胎。模拟表明,垫子微波腔的电场强度在腔的表面和侧边缘和食物的侧边缘最大。实验加热模式具有强烈的相似性,具有计算机模型模拟的电场分布。数字双床建模方法可用于设计改善垫工业系统中即食膳食的加热均匀性和吞吐量的选项。

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