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A comparative numerical study on two-phase boiling fluid flow and heat transfer in the microchannel heat sink with different manifold arrangements

机译:具有不同歧管布置的微通道散热器中两相沸腾流体流动和热传递的比较数值研究

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The manifold microchannel (MMC) heat sink system has been widely used in high-heat-flux chip thermal management due to its high surface-to-volume ratio. Two-phase, three-dimensional numerical methods for subcooled flow boiling have been developed using a self-defined solver based on OpenFOAM. Four different types of manifold arrangements (Z-type, C-type, H-type and U-type) have been investigated at a fixed operational condition. The numerical results evaluate the effects of flow maldistribution caused by different manifold configurations. Before simulating the two-phase boiling flow in MMC metamodels, single-phase liquid flow fields are performed at first to compare the flow maldistribution in microchan-nels. It can be concluded from the flow patterns that H-type and U-type manifolds provide a more even and a lower microchannel void fraction, which is conducive to improving the temperature uniformity and decreasing the effective thermal resistance. The simulation results also show that the wall temperature difference of H-type (0.471 K) is only about 10% of the Z-type (4.683 K). In addition, the U-type manifold configuration show the lowest average pressure drop at the inlet and outlet of the MMC metamodel domain. However, H-type manifold also shows an impressive 59.9% decrease in pressure loss. Results indicate that both the H-type and the U-type manifolds for flow boiling in microchannels are recommended due to their better heat transfer performance and lower pressure drop when compared with Z-type and C-type.
机译:歧管微型通道(MMC)散热器系统由于其高度的表面到体积比而广泛应用于高温磁通芯片热管理。使用基于OpenFoam的自定义求解器开发了两阶段的三维数值方法。已经在固定运行条件下研究了四种不同类型的歧管布置(Z型,C型,H型和U型)。数值结果评估了不同歧管配置引起的流动效果的影响。在模拟MMC形态晶片中的两相沸腾流之前,首先执行单相液体流场,以比较微春凝胶中的流动效果。可以从H型和U型歧管提供更均匀和较低的微通道空隙率的流动模式中得出结论,这有利于改善温度均匀性并降低有效的热阻。仿真结果还表明,H型(0.471k)的壁温差仅为Z型(4.683k)的约10%。另外,U型歧管配置显示了MMC元模型域的入口和出口处的最低平均压降。然而,H型歧管还显示出令人印象深刻的59.9%的压力损失降低。结果表明,与Z型和C型相比,由于其更好的传热性能和较低的压降,建议在微通道中沸腾的H型和U型歧管。

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