Hydrothermal performance of plate-fin heat sinks for the cooling of portable and hand-held electronic devices

M. Boraey
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Abstract

The thermal and hydrodynamic performance of plate-fin heat sinks is investigated numerically using the Lattice Boltzmann Method (LBM). The effect of the spacing between the fins (i.e. flow blockage) and the flow rate (i.e. Reynolds number) on both the thermal and hydrodynamic performance is studied for the low flow rate range. The Thermal Performance Factor TPF is used to weigh the gain in the thermal performance against the associated increase in the pressure drop which helps in selecting the optimum configuration for a specific application. It is found that the best fin configuration depends on the required flow rate range of the thermal management device.
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用于便携式和手持电子设备冷却的板翅片散热器的水热性能
采用点阵玻尔兹曼方法(LBM)对板翅式散热器的热性能和水动力性能进行了数值研究。在小流量范围内,研究了翅片间距(即流阻)和流量(即雷诺数)对热工性能和水动力性能的影响。热性能系数TPF用于权衡热性能的增益与相关压降的增加,这有助于为特定应用选择最佳配置。研究发现,最佳翅片结构取决于热管理装置所需的流量范围。
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