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Numerical modeling of microwave induced natural convection

机译:微波自然对流的数值模拟

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摘要

A three-dimensional numerical model is developed to predict the distribution of electromagnetic fields, power distributions. temperatures. and velocities within a containerized liquid located in a microwave cavity. A three- dimensional Finite-Difference-Time-Domain (FDTD) scheme is used to determine electromagnetic fields and absorbed power by solving the transient Maxwell's equations, and the Finite Control Volume method with SIMPLER algorithm is used to obtain unsteady temperature profiles and flow patterns. Temperature dependence of liquid dielectric properties is simulated through an iterative process. Two liquids, distilled water and corn oil, are chosen to illustrate microwave heating phenomena for high and low loss dielectrics. respectively.
机译:建立了三维数值模型来预测电磁场,功率分布。温度。和位于微波腔中的容器化液体中的速度。三维有限差分时域(FDTD)方案用于通过求解瞬态麦克斯韦方程来确定电磁场和吸收功率,而SIMPLER算法的有限控制体积法用于获得不稳定的温度曲线和流型。液体介电特性的温度依赖性通过迭代过程进行模拟。选择两种液体(蒸馏水和玉米油)来说明高损耗和低损耗电介质的微波加热现象。分别。

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