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A study on thermal fluid flow of magnetron cooling for microwave oven

机译:微波炉磁控冷却热流体流动研究

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A numerical study has been conducted on thermal dissipation fin shape of the magnetron of a microwave oven. The main focus of the study was on reducing the bypass away from cooling air around cooling fins and enhancing the heat transfer around cylindrical anode body with numerical investigation on louver, slit, dimple and bending shape. To optimize the location and the shape of the elliptical dimple, RSM(DOE) was adopted to enhance the thermal dissipation from the cylindrical anode of magnetron. The flow separation around the anode was delayed due to optimized dimple numerically and verified by experimental study. The enhancement of the fin cooling was utilized for cost reduction of the cooling fin by reducing the thickness of the fin from 0.6 mm to 0.5 mm, resulting in weight saving by 16.7 %.
机译:在微波炉磁控管的热耗散翅片形状上进行了数值研究。 该研究的主要重点是将旁路从冷却翅片周围的冷却空气减少,并增强圆柱形阳极体周围的热传递,对百叶窗,狭缝,凹坑和弯曲形状进行数值调查。 为了优化椭圆形凹坑的位置和形状,采用RSM(DOE)来增强磁控管的圆柱阳极的热耗散。 由于实验研究的数值和验证,由于优化的凹坑而延迟阳极周围的流动分离。 通过将鳍片的厚度从0.6mm〜0.5mm降低,利用翅片冷却的增强用于降低冷却翅片的成本降低,导致重量节省16.7%。

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