Tilford Tim, Baginski Ed, Kelder Jasper, Parrott Kevin, Pericleous Koulis
University of Greenwich, Park Row, Greenwich, London, United Kingdom.
J Microw Power Electromagn Energy. 2007;41(4):30-45. doi: 10.1080/08327823.2006.11688570.
Developing temperature fields in frozen cheese sauce undergoing microwave heating were simulated and measured. Two scenarios were investigated: a centric and offset placement on the rotating turntable. Numerical modeling was performed using a dedicated electromagnetic Finite Difference Time Domain (FDTD) module that was two-way coupled to the PHYSICA multiphysics package. Two meshes were used: the food material and container were meshed for the heat transfer and the microwave oven cavity and waveguide were meshed for the microwave field. Power densities obtained on the structured FDTD mesh were mapped onto the unstructured finite volume method mesh for each time-step/turntable position. On heating for each specified time-step the temperature field was mapped back onto the FDTD mesh and the electromagnetic properties were updated accordingly. Changes in thermal/electric properties associated with the phase transition were fully accounted for as well as heat losses from product to cavity. Detailed comparisons were carried out for the centric and offset placements, comparing experimental temperature profiles during microwave thawing with those obtained by numerical simulation.
对冷冻奶酪酱在微波加热过程中形成的温度场进行了模拟和测量。研究了两种情况:在旋转转盘上的中心放置和偏移放置。使用专门的电磁时域有限差分(FDTD)模块进行数值建模,该模块与PHYSICA多物理场软件包进行双向耦合。使用了两种网格:对食品材料和容器进行网格划分以进行热传递,对微波炉腔体和波导进行网格划分以进行微波场分析。在每个时间步/转盘位置,将在结构化FDTD网格上获得的功率密度映射到非结构化有限体积法网格上。在每个指定的时间步加热时,将温度场映射回FDTD网格,并相应地更新电磁特性。充分考虑了与相变相关的热/电特性变化以及产品向腔体的热损失。对中心放置和偏移放置进行了详细比较,将微波解冻过程中的实验温度曲线与数值模拟获得的温度曲线进行了比较。